Publications

421. Phonon-driven wavefunction localization promotes room-temperature, pure single-photon emission in large organic-inorganic lead-halide quantum dots
L.G. Feld, S.C. Boehme, S. Sabisch, N. Frenkel, N. Yazdani, V. Morad, C. Zhu, M. Svyrydenko, R. Tao, M. Bodnarchuk, G. Lubin, M. Kazes, V. Wood, D. Oron, G. Rainò, M.V. Kovalenko

ArXiv (24 April 2024): external pageLink

420. Spin-dependent exciton-exciton interactions in a mixed lead halide perovskite crystal
S. Grisard, A.V. Trifonov, T. Hahn, T. Kuhn, O. Hordiichuk, M.V. Kovalenko, D.R. Yakovlev, M. Bayer, I.A. Akimov

ArXiv (13 April 2024): external pageLink

419. Navigating the Carbon Maze: A Roadmap to Effective Carbon Conductive Networks for Lithium-Ion Batteries
J.F. Baumgärtner, K.V. Kravchyk, M.V. Kovalenko
Adv. Energy Mater2024, 2400499. external pageLink (open access) external pagePDF

Navigating the Carbon Maze: A Roadmap to Effective Carbon Conductive Networks for Lithium-Ion Batteries

418. Circularly Polarized Luminescence Without External Magnetic Fields from Individual CsPbBr3 Perovskite Quantum Dots
V. Oddi, C. Zhu, M.A. Becker, Y. Sahin, D.N. Dirin, T. Kim, R.F. Mahrt, J. Even, G. Rainò, M.V. Kovalenko, T. Stöferle

ArXiv (2 April 2024): external pageLink

417. Quantifying Förster Resonance Energy Transfer from Single Perovskite Quantum Dots to Organic Dyes
L.G. Feld, S.C. Boehme, V. Morad, Y. Sahin, C.J. Kaul, D.N. Dirin, G. Rainò, and M.V. Kovalenko
ACS Nano2024, 18, 14, 9997–10007. external pageLink (open access) external pagePDF

Disorder and Halide Distributions in Cesium Lead Halide Nanocrystals as Seen by Colloidal 133Cs Nuclear Magnetic Resonance Spectroscopy

416. Antimony-Doped Tin Oxide Hole Injection Interlayer Improving the Efficiency of Perovskite Nanocrystal Light Emitting Diodes
A. Ioakeimidis, F. Galatopoulos, M. Athanasiou, A. Hauser, M. Rossier, M.I. Bodnarchuk, M.V. Kovalenko, G. Itskos, and S.A. Choulis
ACS Appl. Opt. Mater., 2024, 2, 3, 528–534. external pageLink (open access) external pagePDF

415. Roadmap on Multivalent Batteries
M.R. Palacin, P. Johansson, R. Dominko, B. Dlugatch, D. Aurbach, Z. Li, M. Fichtner, O. Lužanin, J. Bitenc, Z. Wei, C. Glaser, J. Janek, A. Fernández-Barquín, A.R. Mainar, O. Leonet, I. Urdampilleta, J.A. Blázquez, D.S. Tchitchekova, A. Ponrouch, P. Canepa, G.S. Gautam, R.S.R.G. Casilda, C.S. Martinez-Cisneros, N.U. Torres, A. Varez, J.-Y. Sanchez, K.V Kravchyk, M.V. Kovalenko, A.A Teck, H. Shiel, I.E.L. Stephens, M.P. Ryan, E. Zemlyanushin, S. Dsoke, R. Grieco, N. Patil, R. Marcilla, X. Gao, C.J. Carmalt, G. He and M.-M. Titirici
J. Phys. Energy2024, accepted. external pageLink (open access) external pagePDF

414. Attractive and repulsive forces in a crystal of [Rb(18-crown-6)][SbCl6] under high pressure
E.B. Rusanov, M.D. Wörle, M.V. Kovalenko, K.V. Domasevitch and J.A. Rusanova
Acta Cryst.2024, B80, 135–145. external pageLink (open access) external pagePDF

413. Disorder and Halide Distributions in Cesium Lead Halide Nanocrystals as Seen by Colloidal 133Cs Nuclear Magnetic Resonance Spectroscopy
M. Aebli, C.J. Kaul, N. Yazdani, F. Krieg, C. Bernasconi, D. Guggisberg, M. Marczak, V. Morad, L. Piveteau, M.I. Bodnarchuk, R. Verel, V. Wood, and M.V. Kovalenko
Chem. Mater.2024, 36, 6, 2767–2775. external pageLink (open access) external pagePDF

Disorder and Halide Distributions in Cesium Lead Halide Nanocrystals as Seen by Colloidal 133Cs Nuclear Magnetic Resonance Spectroscopy

412. Coherent Carrier Spin Dynamics in FAPbBr3 Perovskite Crystals
E. Kirstein, E.A. Zhukov, D.R. Yakovlev, N.E. Kopteva, E. Yalcin, I.A. Akimov, O. Hordiichuk, D.N. Dirin, M.V. Kovalenko, and M. Bayer
J. Phys. Chem. Lett.2024, 15, 2893–2903. external pageLink

411. All-Perovskite Multicomponent Nanocrystal Superlattices
T.V. Sekh, I. Cherniukh, E. Kobiyama, T.J. Sheehan, A. Manoli, C. Zhu, M. Athanasiou, M. Sergides, O. Ortikova, M.D. Rossell, F. Bertolotti, A. Guagliardi, N. Masciocchi, R. Erni, A. Othonos, G. Itskos, W.A. Tisdale, T. Stöferle, G. Rainò, M.I. Bodnarchuk, and M.V. Kovalenko
ACS Nano2024, 18, 11, 8423–8436. external pageLink (open access) external pagePDF

All-Perovskite Multicomponent Nanocrystal Superlattices

410. Garnet-Based Solid-State Li Batteries with High-Surface-Area Porous LLZO Membranes
H. Zhang, F. Okur, B. Pant, M. Klimpel, S. Butenko, D.T. Karabay, A. Parrilli, A. Neels, Y. Cao, K.V. Kravchyk, and M.V. Kovalenko
ACS Appl. Mater. Interfaces.2024, 16, 10, 12353–12362. external pageLink (open access) external pagePDF

Garnet-Based Solid-State Li Batteries with High-Surface-Area Porous LLZO Membranes

409. Multiscale Supercrystal Meta-atoms
P. Tonkaev, E. Grechaninova, I. Iorsh, F. Montanarella, Y. Kivshar, M.V. Kovalenko, and S. Makarov
Nano Lett.2024, 24, 9, 2758–2764. Lexternal pageink

408. Ultrafast vibrational control of organohalide perovskite optoelectronic devices using vibrationally promoted electronic resonance
N.P. Gallop, D.R. Maslennikov, N. Mondal, K.P. Goetz, Z. Dai, A.M. Schankler, W. Sung, S. Nihonyanagi, T. Tahara, M.I. Bodnarchuk, M.V. Kovalenko, Y. Vaynzof, A.M. Rappe, A.A. Bakulin
Nat. Mater.2024, 23, 88–94. external pageLink

407. Narrow-Band Green-Emitting Hybrid Organic–Inorganic Eu (II)-Iodides for Next-Generation Micro-LED Displays
K. Han, J. Jin, X. Zhou, Y. Duan, M.V. Kovalenko, Z. Xia
Adv. Mater.2024, 2313247. external pageLink

406. Quantifying the Size-Dependent Exciton-Phonon Coupling Strength in Single Lead-Halide Perovskite Quantum Dots
C. Zhu, L.G. Feld, M. Svyrydenko, I. Cherniukh, D.N. Dirin, M.I. Bodnarchuk, V. Wood, N. Yazdani, S.C. Boehme, M.V. Kovalenko, G. Rainò
Adv. Optical Mater.2024, 2301534. external pageLink (open access) external pagePDF

Quantifying the Size-Dependent Exciton-Phonon Coupling Strength in Single Lead-Halide Perovskite Quantum Dots

405. Photovoltaic limitations of FAPbI3 nanocrystal solar cells associated with ligand washing processes
F. Galatopoulos, P. Papagiorgis, A. Ioakeimidis, A.Z. Chrusou, A. Souzou, C. Christodoulou, C. Bernasconi, M.I. Bodnarchuk, E. Leontidis, M.V. Kovalenko, G. Itskos, S. A. Choulis
APL Energy2024, 2, 016101. external pageLink

404. AFM-IR of EHD-Printed PbS Quantum Dots: Quantifying Ligand Exchange at the Nanoscale
L.J.A. Ferraresi, G. Kara, N.A. Burnham, R. Furrer, D.N. Dirin, F. La Mattina, M.V. Kovalenko, M. Calame, I. Shorubalko

ArXiv (9 January 2024): external pageLink

403. Assessment of Critical Stack Pressure and Temperature in Li-Garnet Batteries
M. Klimpel, H. Zhang, G. Paggiaro, R. Dubey, F. Okur, L.P.H. Jeurgens, K.V. Kravchyk, M.V. Kovalenko
Adv. Mater. Interfaces2024, 2300948. external pageLink (open access) external pagePDF

Assessment of Critical Stack Pressure and Temperature in Li-Garnet Batteries

402. Hot Excitons Cool in Metal Halide Perovskite Nanocrystals as Fast as CdSe Nanocrystals
D.P. Strandell, D. Zenatti, P. Nagpal, A. Ghosh, D.N. Dirin, M.V. Kovalenko, and P. Kambhampati
ACS Nano2024, 18, 1, 1054–1062. external pageLink

401. Designer Phospholipid Capping Ligands for Soft Metal Halide Nanocrystals
V. Morad, A. Stelmakh, M. Svyrydenko, L.G. Feld, S.C. Boehme, M. Aebli, J. Affolter, C.J. Kaul, N.J. Schrenker, S. Bals, Y. Sahin, D.N. Dirin, I. Cherniukh, G. Raino, A. Baumketner, M.V. Kovalenko
Nature, 2024, 626, 542–548. external pageLink
Researchsquare (13 November 2023): external pageLink

Designer Phospholipid Capping Ligands for Soft Metal Halide Nanocrystals

Highlights: ETH News, 2024, January 31 (“How to make bright quantum dots even brighter” by Oliver Morsch); Empa News, 2024, February 2 (“external pageHow to make bright quantum dots even brighter” by Oliver Morsch).

400. Electric-field-resolved detection of localized surface plasmons at petahertz-scale frequencies
D.A. Zimin, I. Cherniukh, S.C. Böhme, G. Rainò, M.V. Kovalenko, H.J. Wörner

ArXiv (18 December 2023): external pageLink

399. Single-photon Superradiance in Individual Cesium Lead Halide Quantum Dots
C. Zhu, S.C. Boehme, L.G. Feld, A. Moskalenko, D.N. Dirin, R.F. Mahrt, T. Stöferle, M.I. Bodnarchuk, A.L. Efros, P.C. Sercel, M.V. Kovalenko, G. Rainò
Nature, 2024, 626, 535–541. external pageLink
Researchsquare (17 December 2023): external pageLink

Single-photon superradiance in individual caesium lead halide quantum dots

Highlights: ETH News, 2024, January 31 (“How to make bright quantum dots even brighter” by Oliver Morsch); Empa News, 2024, February 2 (“external pageHow to make bright quantum dots even brighter” by Oliver Morsch).

398. Scaling of Hybrid QDs-Graphene Photodetectors to Subwavelength Dimension
G. Kara, P. Rohner, E. Wu, D.N. Dirin, R. Furrer, D. Poulikakos, M.V. Kovalenko, M. Calame, I. Shorubalko

ArXiv (8 December 2023): external pageLink

397. Colloidal aziridinium lead bromide quantum dots
M.I. Bodnarchuk, L.G. Feld, C. Zhu, S.C. Boehme, F. Bertolotti, J. Avaro, M. Aebli, S.H. Mir, N. Masciocchi, R. Erni, S. Chakraborty, A. Guagliardi, G. Rainò, M.V. Kovalenko
ACS Nano, 2024, 18, 7, 5684–5697. external pageLink (open access) external pagePDF
Researchsquare (29 November 2023): external pageLink

Assessment of Critical Stack Pressure and Temperature in Li-Garnet Batteries

396. Disentangling the Effects of Structure and Lone-Pair Electrons in the Lattice Dynamics of Halide Perovskites
S. Caicedo-Dávila, A. Cohen, S.G. Motti, M. Isobe, K.M. McCall, M.V. Kovalenko, O. Yaffe, L.M. Herz, D.H. Fabini, D.A. Egger

ArXiv (5 October 2023): external pageLink

395. Strong light-matter coupling in lead halide perovskite quantum dot solids
C. Bujalance, L. Calio, D.N. Dirin, D.O. Tiede, J.F. Galisteo-Lopez, J. Feist, F.J. Garcia-Vidal, M.V. Kovalenko, H. Miguez

ArXiv (19 June 2023): external pageLink

394. Giant optical orientation of exciton spins in lead halide perovskite crystals
N.E. Kopteva, D.R. Yakovlev, E. Yalcin, I.A. Akimov, M.O. Nestoklon, M.M. Glazov, M. Kotur, D. Kudlacik, E.A. Zhukov, E. Kirstein, O. Hordiichuk, D.N. Dirin, M.V. Kovalenko, M. Bayer

ArXiv (18 May 2023): external pageLink

393. Dark-Bright Exciton Splitting Dominates Low-Temperature Diffusion in Halide Perovskite Nanocrystal Assemblies
A.J. Bornschlegl, M.F. Lichtenegger, L. Luber, C. Lampe, M.I. Bodnarchuk, M.V. Kovalenko, A.S. Urban
Adv. Energy Mater.2024, 2303312. external pageLink (open access) external pagePDF
Researchsquare (13 January 2023): external pageLink

392. Persistent Enhancement of Exciton Diffusivity in CsPbBr3 Nanocrystal Solids
W. Shcherbakov-Wu, S. Saris, T. Sheehan, N.N. Wong, E.R. Powers, F. Krieg, M.V. Kovalenko, A.P. Willard, W.A. Tisdale
Sci. Adv.
, 2024, 10, eadj2630. external pageLink
ArXiv (28 September 2022): external pageLink

391. Coupling to octahedral tilts in halide perovskite nanocrystals induces phonon-mediated attractive interactions between excitons
N. Yazdani, M.I. Bodnarchuk, F. Bertolotti, N. Masciocchi, I. Fureraj, B. Guzelturk, B.L. Cotts, M. Zajac, G. Rainò, M. Jansen, S.C. Boehme, M. Yarema, M. Lin, M. Kozina, A. Reid, X. Shen, S. Weathersby, X. Wang, E. Vauthey, A. Guagliardi, M.V. Kovalenko, V. Wood, A. Lindenberg
Nat. Phys., 2024, 20, 47–53external pageLink
ArXiv (11 March 2022): external pageLink

390. Nitrile-functionalized Poly(siloxane) as Electrolytes for High-Energy-Density Solid-State Li Batteries
F. Okur, Y. Sheima, C. Zimmerli, H. Zhang, P. Helbling, A. Fäh, I. Mihail, J. Tschudin, D. Opris, M.V. Kovalenko, K.V. Kravchyk
ChemSusChem2024, 17, e202301285. external pageLink (open access) external pagePDF

Nitrile-functionalized Poly(siloxane) as Electrolytes for High-Energy-Density Solid-State Li Batteries

389. Enhancing Multiexcitonic Emission in Metal-Halide Perovskites by Quantum Confinement
D. Strandell, D. Dirin, D. Zenatti, P. Nagpal, A. Ghosh, G. Raino, M.V. Kovalenko, and P. Kambhampati
ACS Nano2023, 17, 24, 24910–24918. external pageLink

388. Size- and Temperature-Dependent Lattice Anisotropy and Structural Distortion in CsPbBr3 Quantum Dots by Reciprocal Space X-ray Total Scattering Analysis
F. Bertolotti, N. Dengo, A. Cervellino, M.I. Bodnarchuk, C. Bernasconi, I. Cherniukh, Y. Berezovska, S.C. Boehme, M.V. Kovalenko, N. Masciocchi, A. Guagliardi
Small Structures2023, 2300264. external pageLink (open access) external pagePDF

387. Air-sensitive amplified spontaneous emission in lecithin-capped CsPbBr3 nanocrystals thin films
S. Milanese, G. Morello, M.L. De Giorgi, A. Cretì, H. Andrusiv, M.I. Bodnarchuk, A. Qualtieri, M. Lomascolo, M.V. Kovalenko, M. Anni
Materials Today Physics2023, 35, 101098. external pageLink (open access) external pagePDF

386. Fast Diffusion of Spin Polarized Excitons in Organic–Inorganic Lead Halide Perovskites
S. Anghel, A.V. Poshakinskiy, D.R. Yakovlev, E. Kirstein, N.E. Kopteva, O. Hordiichuk, M.V. Kovalenko, M. Bayer, and M. Betz
ACS Photonics2023, 10, 12, 4169–417. external pageLink

385. The Impact of Ligand Removal on the Optoelectronic Properties of Inorganic and Hybrid Lead Halide Perovskite Nanocrystal Films
P. Papagiorgis, M. Sergides, A. Manoli, M. Athanasiou, C. Bernasconi, F. Galatopoulos, A. Ioakeimidis, C. Nicolaides, E. Leontidis, T. Trypiniotis, S. Choulis, M.I. Bodnarchuk, M.V. Kovalenko, A. Othonos, G. Itskos
Adv. Opt. Mater.2023, 2301501. external pageLink (open access) external pagePDF

384. Variance analysis of dynamic light scattering data
P. Anzini, D. Biganzoli, I. Cherniukh, M.V. Kovalenko, A. Parola, and F. Ferri
Rev. Sci. Instrum.2023, 94, 9. external pageLink

383. Standardizing critical current density measurements in lithium garnets
M. Klimpel, H. Zhang, M.V. Kovalenko, K.V. Kravchyk
Commun. Chem.2023, 6, 192. external pageLink (open access) external pagePDF

Standardizing critical current density measurements in lithium garnets

382. Pyrochlore-type iron hydroxy fluorides as low-cost lithium-ion cathode materials for stationary energy storage
J.F. Baumgärtner, M. Wörle, C.P. Guntlin, F. Krumeich, S. Siegrist, V. Vogt, D.C. Stoian, D. Chernyshov, W. van Beek, K.V. Kravchyk, M.V. Kovalenko
Adv. Mater.2023, 2304158. external pageLink (open access) external pagePDF

Pyrochlore-Type Iron Hydroxy Fluorides as Low-Cost Lithium-Ion Cathode Materials for Stationary Energy Storage

381. Exciton-polaritons in CsPbBr3 crystals revealed by optical reflectivity in high magnetic fields and two-photon spectroscopy
D.R. Yakovlev, S.A. Crooker, M.A. Semina, J. Rautert, J. Mund, D.N. Dirin, M.V. Kovalenko, M. Bayer
Phys. Status Solidi RRL, 2023, 2300407. external pageLink (open access) external pagePDF
ArXiv (13 July 2023): external pageLink

380. Ultrafast-sintered self-standing LLZO membranes for high energy density lithium-garnet solid-state batteries
H. Zhang, R. Dubey, M. Inniger, F. Okur, R. Wullich, A. Parrilli, D.T. Karabay, A. Neels, K.V. Kravchyk, M.V. Kovalenko
Cell Rep. Phys. Sci.2023, 4, 101473. external pageLink (open access) external pagePDF

Ultrafast-sintered self-standing LLZO membranes for high energy density lithium-garnet solid-state batteries

379. On High-Temperature Thermal Cleaning of Li7La3Zr2O12 Solid-State Electrolytes
H. Zhang, G. Paggiaro, F. Okur, J. Huwiler, C. Cancellieri, L.P.H. Jeurgens, D. Chernyshov, W. van Beek, M.V. Kovalenko, and K.V. Kravchyk
ACS Appl. Energy Mater.2023, 6, 13, 6972–6980. external pageLink (open access) external pagePDF

On High-Temperature Thermal Cleaning of Li7La3Zr2O12 Solid-State Electrolytes
Structural Diversity in Multicomponent Nanocrystal Superlattices Comprising Lead Halide Perovskite Nanocubes

378. Photon-dressed biexciton-mediated anomalous optical Stark effect in CsPbBr3 nanocrystals
M. Shrivastava, F. Krieg, M.V. Kovalenko, K.V. Adarsh
Surf. Interface Anal.2023, 55, 501–506. external pageLink

377. Long-lived exciton coherence in mixed-halide perovskite crystals
S. Grisard, A.V. Trifonov, I.A. Solovev, D.R. Yakovlev, O. Hordiichuk, M.V. Kovalenko, M. Bayer, I.A. Akimov
Nano Lett., 2023, 23, 16, 7397–7403. external pageLink (open access) external pagePDF
ArXiv (16 May 2023): external pageLink

376. Air sensitive Amplified Spontaneous Emission in lecithin capped CsPbBr3 nanocrystals thin films
S. Milanese, G. Morello, M.L. De Giorgi, A. Cretì, H. Andrusiv, M.I. Bodnarchuk, A. Qualtieri, M. Lomascolo, M.V. Kovalenko, M. Anni
Mater. Today Phys.2023, 35, 101098. external pageLink

375. Benchmarking the performance of lithiated metal oxide interlayers at the LiCoO2|LLZO interface
A. Müller, F. Okur, A. Aribia, N. Osenciat, C.A.F. Vaz, V. Siller, M. El Kazzi, E. Gilshtein, M.H. Futscher, K.V. Kravchyk, M.V. Kovalenko, and Y.E. Romanyuk
Mater. Adv.2023, 4, 2138-2146. external pageLink (open access) external pagePDF

374. Ligand Effects in Assembly of Cubic and Spherical Nanocrystals: Applications to Packing of Perovskite Nanocubes
J. Hallstrom, I. Cherniukh, X. Zha, M.V. Kovalenko, and A. Travesset
ACS Nano2023, 17, 8, 7219–7228. external pageLink

Ligand Effects in Assembly of Cubic and Spherical Nanocrystals: Applications to Packing of Perovskite Nanocubes

373. Extending the High-Voltage Operation of Graphite/NCM811 Cells by Constructing a Robust Electrode/Electrolyte Interphase Layer
W. Zhao, K. Wang, R. Dubey, F. Ren, E. Brack, M. Becker, R. Grissa, L. Seidl, F. Pagani, K. Egorov, K.V. Kravchyk, M.V. Kovalenko, P. Yan, Y. Yang, C. Battaglia
Mater. Today Energy2023, 34, 101301. external pageLink (open access) external pagePDF

372. Synthesis of Antimicrobial Gallium Nanoparticles Using the Hot Injection Method
C. Limantoro, T. Das, M. He, D. Dirin, J. Manos, M.V. Kovalenko, and W. Chrzanowski
ACS Mater. Au2023, 3, 4, 310–320. external pageLink (open access) external pagePDF

Synthesis of Antimicrobial Gallium Nanoparticles Using the Hot Injection Method

371. Spin-Flip Raman Scattering on Electrons and Holes in Two-Dimensional (PEA)2PbI4 Perovskites
C. Harkort, D. Kudlacik, N.E. Kopteva, D.R. Yakovlev, M. Karzel, E. Kirstein, O. Hordiichuk, M.V. Kovalenko, M. Bayer
Small2023, 2300988. external pageLink (open access) external pagePDF
ArXiv (5 February 2023): external pageLink

370. Confinement and Exciton Binding Energy Effects on Hot Carrier Cooling in Lead Halide Perovskite Nanomaterials
B.P. Carwithen, T.R. Hopper, Z. Ge, N. Mondal, T. Wang, R. Mazlumian, X. Zheng, F. Krieg, F. Montanarella, G. Nedelcu, M. Kroll, M.A. Siguan, J.M. Frost, K. Leo, Y. Vaynzof, M.I. Bodnarchuk, M.V. Kovalenko, and A.A. Bakulin
ACS Nano2023, 17, 7, 6638–6648. external pageLink (open access) external pagePDF

369. Colloidal CsPbX3 Nanocrystals with Thin Metal Oxide Gel Coatings
D. Guggisberg, S. Yakunin, C. Neff, M. Aebli, D. Günther, M.V. Kovalenko, and D.N. Dirin
Chem. Mater.2023, 35, 7, 2827–2834. external pageLink (open access) external pagePDFexternal page

Colloidal CsPbX3 Nanocrystals with Thin Metal Oxide Gel Coatings

368. Intermediate-Stage Sintered LLZO Scaffolds for Li-Garnet Solid-State Batteries
F. Okur, H. Zhang, D.T. Karabay, K. Muench, A. Parrilli, A. Neels, W. Dachraoui, M.D. Rossell, C. Cancellieri, L.P.H. Jeurgens, K.V. Kravchyk, M.V. Kovalenko
Adv. Energy Mater.2023, 2203509external pageLink (open access) external pagePDF

Intermediate-Stage Sintered LLZO Scaffolds for Li-Garnet Solid-State Batteries

367. Microfluidic synthesis of monodisperse and size-tunable CsPbBr3 supraparticles
J. Nette, F. Montanarella, C. Zhu, T.V. Sekh, S.C. Boehme, M.I. Bodnarchuk, G. Rainò, P.D. Howes, M.V. Kovalenko and A.J. deMello
Chem. Commun.2023, 59, 3554-3557. external pageLink (open access) external pagePDF

366. Methodological Studies of the Mechanism of Anion Insertion in Nanometer-Sized Carbon Micropores
C. Welty, E.E. Taylor, S. Posey, P. Vailati, K.V. Kravchyk, M.V. Kovalenko, N.P. Stadie
ChemSusChem2023, 16, e202201847external pageLink

365. Intrinsic Formamidinium Tin Iodide Nanocrystals by Suppressing the Sn(IV) Impurities
D.N. Dirin, A. Vivani, M. Zacharias, T.V. Sekh, I. Cherniukh, S. Yakunin, F. Bertolotti, M. Aebli, R.D. Schaller, A. Wieczorek, S. Siol, C. Cancellieri, L.P.H. Jeurgens, N. Masciocchi, A. Guagliardi, L. Pedesseau, J. Even, M.V. Kovalenko, and M.I. Bodnarchuk
Nano Lett.2023, 23, 5, 1914–1923. external pageLink (open access) external pagePDF

Intrinsic Formamidinium Tin Iodide Nanocrystals by Suppressing the Sn(IV) Impurities

364. Weak Dispersion of Exciton Landé Factor with Band Gap Energy in Lead Halide Perovskites: Approximate Compensation of the Electron and Hole Dependences
N.E. Kopteva, D.R. Yakovlev, E. Kirstein, E.A. Zhukov, D. Kudlacik, I.V. Kalitukha, V.F. Sapega, O. Hordiichuk, D.N. Dirin, M.V. Kovalenko, A. Baumann, J. Höcker, V. Dyakonov, S.A. Crooker, M. Bayer
Small2023, 2300935. external pageLink (open access) external pagePDF
ArXiv (30 January 2023): external pageLink

363. The squeezed dark nuclear spin state in lead halide perovskites
E. Kirstein, D.S. Smirnov, E.A. Zhukov, D.R. Yakovlev, N.E. Kopteva, D.N. Dirin, O. Hordiichuk, M.V. Kovalenko, M. Bayer
Nat. Commun., 2023, 14, 6683. external pageLink (open access) external pagePDF
ArXiv (26 January 2023): external pageLink

362. Conformal Integration of an Inkjet-Printed PbS QDs-Graphene IR Photodetector on a Polymer Optical Fiber
G. Kara, S. Bolat, K. Sharma, M.J. Grotevent, D.N. Dirin, D. Bachmann, R. Furrer, L.F. Boesel, Y.E. Romanyuk, R.M. Rossi, M.V. Kovalenko, M. Calame, I. Shorubalko
Adv. Mater. Technol.2023, 2201922external pageLink (open access) external pagePDF

361. On Achievable Gravimetric and Volumetric Energy Densities of Al Dual-Ion Batteries
K.V. Kravchyk and M.V. Kovalenko
ACS Energy Lett.2023, 8, 1266–1269external pageLink (open access) external pagePDF

On Achievable Gravimetric and Volumetric Energy Densities of Al Dual-Ion Batteries

360. Strongly Confined CsPbBr3 Quantum Dots as Quantum Emitters and Building Blocks for Rhombic Superlattices
S.C. Boehme, M.I. Bodnarchuk, M. Burian, F. Bertolotti, I. Cherniukh, C. Bernasconi, C. Zhu, R. Erni, H. Amenitsch, D. Naumenko, H. Andrusiv, N. Semkiv, R.A. John, A. Baldwin, K. Galkowski, N. Masciocchi, S.D. Stranks, G. Rainò, A. Guagliardi, and M.V. Kovalenko
ACS Nano2023, 17, 3, 2089–2100external pageLink (open access) external pagePDF

Strongly Confined CsPbBr3 Quantum Dots as Quantum Emitters and Building Blocks for Rhombic Superlattices

359. Bilayer Dense-Porous Li7La3Zr2O12 Membranes for High-Performance Li-Garnet Solid-State Batteries
H. Zhang, F. Okur, C. Cancellieri, L.P.H. Jeurgens, A. Parrilli, D.T. Karabay, M. Nesvadba, S. Hwang, A. Neels, M.V. Kovalenko, K.V. Kravchyk
Adv. Sci.2023, 2205821external pageLink (open access) external pagePDF

Bilayer Dense-Porous Li7La3Zr2O12 Membranes for High-Performance Li-Garnet Solid-State Batteries

358. Universal scaling laws for charge-carrier interactions with quantum confinement in lead-halide perovskites
P. Tamarat, E. Prin, Y. Berezovska, A. Moskalenko, T.P.T. Nguyen, C. Xia, L. Hou, J.-B. Trebbia, M. Zacharias, L. Pedesseau, C. Katan, M.I. Bodnarchuk, M.V. Kovalenko, J. Even & B. Lounis
Nat. Commun.2023, 14, 229external pageLink (open access) external pagePDF

357. Direct Observation of Ultrafast Lattice Distortions during Exciton–Polaron Formation in Lead Halide Perovskite Nanocrystals
H. Seiler, D. Zahn, V.C.A. Taylor, M.I. Bodnarchuk, Y.W. Windsor, M.V. Kovalenko, and R. Ernstorfer
ACS Nano2023, 17, 3, 1979–1988external pageLink (open access) external pagePDF
ArXiv (13 September 2022): external pageLink

356. Many-body Correlations and Exciton Complexes in CsPbBr3 Quantum Dots
C. Zhu, T. Nguyen, S.C. Boehme, A. Moskalenko, D.N. Dirin, M.I. Bodnarchuk, C. Katan, J. Even, G. Rainò, M.V. Kovalenko
Adv. Mater.2023, 2208354external pageLink (open access) external pagePDF

Many-body Correlations and Exciton Complexes in CsPbBr3 Quantum Dots

355. Coherent Spin Dynamics of Electrons in Two-Dimensional (PEA)2PbI4 Perovskites
E. Kirstein, E.A. Zhukov, D.R. Yakovlev, N.E. Kopteva, C. Harkort, D. Kudlacik, O. Hordiichuk, M.V. Kovalenko, and M. Bayer
Nano Lett.2023, 23, 205–212external pageLink

354. Growth and Self-Assembly of CsPbBr3 Nanocrystals in the TOPO/PbBr2 Synthesis as Seen with X-ray Scattering
F. Montanarella, Q.A. Akkerman, D. Bonatz, M.M. van der Sluijs, J.C. van der Bok, P. Tim Prins, M. Aebli, A. Mews, D. Vanmaekelbergh, and M.V. Kovalenko
Nano Lett.2023, 23, 2, 667–676external pageLink (open access) external pagePDF

Growth and Self-Assembly of CsPbBr3 Nanocrystals in the TOPO/PbBr2 Synthesis as Seen with X-ray Scattering

353. Integrated photodetectors for compact Fourier-transform waveguide spectrometers
M.J. Grotevent, S. Yakunin, D. Bachmann, C. Romero, J.R. Vázquez de Aldana, M. Madi, M. Calame, M.V. Kovalenko & I. Shorubalko
Nat. Photon.2023, 17, 59-64. external pageLink

352. Stable perovskite single-crystal X-ray imaging detectors with single-photon sensitivity
K. Sakhatskyi, B. Turedi, G.J. Matt, E. Wu, A. Sakhatska, V. Bartosh, M.N. Lintangpradipto, R. Naphade, I. Shorubalko, O.F. Mohammed, S. Yakunin, O.M. Bakr & M.V. Kovalenko
Nat. Photon., 2023, 17, 510-517. external pageLink.
Researchsquare (1 December 2021): external pageLink

Stable perovskite single-crystal X-ray imaging detectors with single-photon sensitivity

351. Single-Crystal Perovskite Solar Cells Exhibit Close to Half A Millimeter Electron-Diffusion Length
B. Turedi, M.N. Lintangpradipto, O.J. Sandberg, A. Yazmaciyan, G.J. Matt, A.Y. Alsalloum, K. Almasabi, K. Sakhatskyi, S. Yakunin, X. Zheng, R. Naphade, S. Nematulloev, V. Yeddu, D. Baran, A. Armin, M.I. Saidaminov, M.V. Kovalenko, O.F. Mohammed, O.M. Bakr
Adv. Mater.2022, 34, 2202390external pageLink (open access) external pagePDF

350. Halide perovskites for photonic applications
M. Chamarro, C.R Mayer, T. Pauporté, E. Drouard, H.S. Nguyen, C. Seassal, S.C. Boehme, M.V. Kovalenko, E. Deleporte
Photoniques2022, 116, 42-47. external pageLink (open access) external pagePDF

349. Ionic-electronic halide perovskite memdiodes enabling neuromorphic computing with a second-order complexity
R.A. John, A. Milozzi, S. Tsarev, R. Brönnimann, S.C. Boehme, E. Wu, I. Shorubalko, M.V. Kovalenko, D. lmini
Sci. Adv.
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348. Locking exciton fine-structure splitting
G. Rainò, M.V. Kovalenko
Nat. Mater.2022, 21, 1219-1220. external pageLink

347. Gain and lasing from CdSe/CdS nanoplatelet stripe waveguides
M. Belitsch, D.N. Dirin, M.V. Kovalenko, K. Pichler, S. Rotter, A. Ghalgaoui, H. Ditlbacher, A. Hohenau, J.R. Krenn
Micro Nano Eng.2022, 17, 100167external pageLink

346. Assessing the Drawbacks and Benefits of Ion Migration in Lead Halide Perovskites
K. Sakhatskyi, R.A. John, A. Guerrero, S. Tsarev, S. Sabisch, T. Das, G.J. Matt, S. Yakunin, I. Cherniukh, M. Kotyrba, Y. Berezovska, M.I. Bodnarchuk, S. Chakraborty, J. Bisquert, and M.V. Kovalenko
ACS Energy Lett.2022, 7, 3401–3414external pageLink (open access) external pagePDF

Assessing the Drawbacks and Benefits of Ion Migration in Lead Halide Perovskites

345. Controlling the nucleation and growth kinetics of lead halide perovskite quantum dots
Q.A. Akkerman, T.P.T. Nguyen, S.C. Boehme, F. Montanarella, D.N. Dirin, P. Wechsler, F. Beiglböck, G. Raino, R. Erni, C. Katan, J. Even, M.V. Kovalenko
Science, 2022, 377, 1406-1412. external pageLink (open access) external pagePDF
Researchsquare (25 February 2022): external pageLink

344. Photon-dressed biexciton mediated anomalous optical Stark effect in CsPbBr3 nanocrystals
M. Shrivastava, F. Krieg, M.V. Kovalenko, K.V. Adarsh
Surf. Interface Anal.2022, 1-6. external pageLink

343. Photoconductivity of PbS/perovskite quantum dots in gold nanogaps
D. Grimaldi, E. Kelderer, D.N. Dirin, M.V. Kovalenko, A. Hohenau, H. Ditlbachera and J.R. Krenn
Nanoscale Adv., 2022, 4, 3566-3572external pageLink (open access) external pagePDF

342. Inductive and Capacitive Hysteresis of Halide Perovskite Solar Cells and Memristors Under Illumination
L. Munoz-Diaz, A.J. Rosa, A. Bou, R.S. Sánchez, B. Romero, R.A. John, M.V. Kovalenko, A. Guerrero, and J. Bisquert
Front. Energy Res.2022, 10, 914115. external pageLink (open access) external pagePDF

341. Stability of perovskite materials and devices
W. Fu, A. Gaetano, R. Quinten, A. Akkerman, R.A. John, M.M. Tavakoli, S. Essig, M.V. Kovalenko, M. Saliba
Materials Today2022, 58, 275-296. external pageLink

340. Impact of anisotropy in spin-orbit coupling on the magneto-optical properties of bulk lead halide perovskites
A. Kostadinov-Mutzafi, J. Tilchin, A. Shapiro, D.N. Dirin, M.V. Kovalenko, L.Z. Tan, and E. Lifshitz
Phys. Rev. B2022, 106, 035303. external pageLink (open access) external pagePDF

339. Amplified Spontaneous Emission Threshold Dependence on Determination Method in Dye-Doped Polymer and Lead Halide Perovskite Waveguides
S. Milanese, M.L. De Giorgi, L. Cerdán, M.-G. La-Placa, N.F. Jamaludin, A. Bruno, H.J. Bolink, M.V. Kovalenko and M. Anni
Molecules2022, 27, 4261. external pageLink (open access) external pagePDF

338. Advances and challenges of aluminum–sulfur batteries
M. Klimpel, M.V. Kovalenko, K.V. Kravchyk
Commun. Chem.2022, 5, 77. external pageLink (open access) external pagePDFexternal page

337. Direct analysis of nanoparticles in organic solvents by ICPMS with microdroplet injection
J. Kocic, R. Kaegi, D. Dirin, M.V. Kovalenko, D. Gunther and B. Hattendorf
J. Anal. At. Spectrom.2022, 37, 1738-1750external pageLink

336. Flexible, Free-Standing Polymer Membranes Sensitized by CsPbX3 Nanocrystals as Gain Media for Low Threshold, Multicolor Light Amplification
M. Athanasiou, A. Manoli, P. Papagiorgis, K. Georgiou, Y. Berezovska, A. Othonos, M.I. Bodnarchuk, M.V. Kovalenko, and G.Itskos
ACS Photonics2022, 9, 7, 2385–2397external pageLink (open access) external pagePDF

335. Ligands Mediate Anion Exchange between Colloidal Lead-Halide Perovskite Nanocrystals
E. Scharf, F. Krieg, O. Elimelech, M. Oded, A. Levi, D.N. Dirin, M.V. Kovalenko, and U. Banin
Nano Lett.2022, 22, 11, 4340–4346external pageLink

334. Ultra-narrow room-temperature emission from single CsPbBr3 perovskite quantum dots
G. Rainò, N. Yazdani, S.C. Boehme, M. Kober-Czerny, C. Zhu, F. Krieg, M.D. Rossell, R. Erni, V. Wood, I. Infante and M.V. Kovalenko
Nat. Commun.2022, 13, 2587. external pageLink (open access) external pagePDF

Ultra-narrow room-temperature emission from single CsPbBr3 perovskite quantum dots

333. Compositional Variation in FAPb1–xSnxI3 and Its Impact on the Electronic Structure: A Combined Density Functional Theory and Experimental Study
S. Kahmann, Z. Chen, O. Hordiichuk, O. Nazarenko, S. Shao, M.V. Kovalenko, G.R. Blake, S.Tao, and M.A. Loi
ACS Appl. Mater. Interfaces, 2022, 14, 30, 34253–34261external pageLink (open access) external pagePDF

332. Room-Temperature, Highly Pure Single-Photon Sources from All-Inorganic Lead Halide Perovskite Quantum Dots
C. Zhu, M. Marczak, L. Feld, S.C. Boehme, C. Bernasconi, A. Moskalenko, I. Cherniukh, D. Dirin, M.I. Bodnarchuk, M.V. Kovalenko, and G. Rainò
Nano Lett., 2022, 22, 9, 3751–3760external pageLink (open access) external pagePDF

Room-Temperature, Highly Pure Single-Photon Sources from All-Inorganic Lead Halide Perovskite Quantum Dots

331. Reconfigurable halide perovskite nanocrystal memristors for neuromorphic computing
R.A. John, Y. Demirağ, Y. Shynkarenko, Y. Berezovska, N. Ohannessian, M. Payvand, P. Zeng, M.I. Bodnarchuk, F. Krumeich, G. Kara, I. Shorubalko, M.V. Nair, G.A. Cooke, T. Lippert, G. Indiveri, M.V. Kovalenko
Nature Commun., 2022, 13, 2074. external pageLink (open access) external pagePDF

Reconfigurable halide perovskite nanocrystal memristors for neuromorphic computing

Highlights: Empa News, 2022, May 18 (“external pageA component for brain-inspired computing” by Fabio Bergamin).

330. Amphiphilic Polymer Co-Network: A Versatile Matrix for Tailoring the Photonic Energy Transfer in Wearable Energy Harvesting Devices
C.-S. Huang, S. Yakunin, J. Avaro, X. Kang, M.I. Bodnarchuk, M. Liebi, X. Sun, R.M. Rossi, M.V. Kovalenko, L.F. Boesel
Adv. Energy Mater., 2022, 12, 2200441external pageLink

329. Structural Diversity in Multicomponent Nanocrystal Superlattices Comprising Lead Halide Perovskite Nanocubes
I. Cherniukh, T.V. Sekh, G. Rainò, O.J. Ashton, M. Burian, A. Travesset, M. Athanasiou, A. Manoli, R.A. John, M. Svyrydenko, V. Morad, Y. Shynkarenko, F. Montanarella, D. Naumenko, H. Amenitsch, G. Itskos, R.F. Mahrt, T. Stöferle, R. Erni, M.V. Kovalenko, and M.I. Bodnarchuk
ACS Nano, 2022, 16, 5, 7210–7232external pageLink (open access) external pagePDF

Structural Diversity in Multicomponent Nanocrystal Superlattices Comprising Lead Halide Perovskite Nanocubes
Structural Diversity in Multicomponent Nanocrystal Superlattices Comprising Lead Halide Perovskite Nanocubes

328. Li–Garnet Solid-State Batteries with LLZO Scaffolds
K.V. Kravchyk, H. Zhang, F. Okur, and M.V. Kovalenko
Acc. Mater. Res., 2022, 3, 4, 411–415external pageLink (open access) external pagePDF

Li–Garnet Solid-State Batteries with LLZO Scaffolds

327. Three Millennia of Nanocrystals
F. Montanarella, and M.V. Kovalenko
ACS Nano, 2022, 16, 4, 5085–5102external pageLink

Three Millennia of Nanocrystals

326. Heterostructure from PbS Quantum Dot and Carbon Nanotube Inks for High-Efficiency Near-Infrared Light-Emitting Field-Effect Transistors
D. Bederak, A. Shulga, S. Kahmann, W. Talsma, J. Pelanskis, D.N. Dirin, M.V. Kovalenko, M.A. Loi
Adv. Electron. Mater., 2022, 2101126external pageLink

325. Seed crystal induced cold sintering toward metal halide transparent ceramic scintillators
K. Han, K. Sakhatskyi, J. Jin, Q. Zhang, M.V. Kovalenko, Z. Xia
Adv. Mater., 2022, 34, 2110420external pageLink

324. Ultrafast Electro-Absorption Switching in Colloidal CdSe/CdS Core/Shell Quantum Dots Driven by Intense THz Pulses
C. Gollner, R. Jutas, D. Kreil, D.N. Dirin, S.C. Boehme, A. Baltuška, M.V. Kovalenko, A. Pugžlys
Adv. Optical Mater., 2022, 2102407external pageLink

323. Silicon oxycarbide-tin nanocomposite derived from a UV crosslinked single source preceramic precursor as high-performance anode materials for Li-ion batteries
D. Knozowski, P.V.W. Sasikumar, R. Dubey, M. Aebli, K.V. Kravchyk, G. Trykowskie, M.V. Kovalenko, T. Graule, M. Wilamowska-Zawłocka, G. Blugan
Appl. Mater. Today, 2022, 27, 2, 808–814external pageLink

322. Room-Temperature Anomalous Coherent Excitonic Optical Stark Effect in Metal Halide Perovskite Quantum Dots
M. Shrivastava, F. Krieg, D. Mandal, A.K. Poonia, S.K. Bera, M.V. Kovalenko, and K.V. Adarsh
Nano Lett., 2022, 22, 2, 808–814external pageLink

321. Nanoscale-Resolved Surface-to-Bulk Electron Transport in CsPbBr3 Perovskite
S. Polishchuk, M. Puppin, A. Crepaldi, G. Gatti, D.N. Dirin, O. Nazarenko, N. Colonna, N. Marzari, M.V. Kovalenko, M. Grioni, and M. Chergui
Nano Lett., 2022, 22, 3, 1067–1074external pageLink (open access) external pagePDF

320. On the feasibility of all-solid-state batteries with LLZO as a single electrolyte
K.V. Kravchyk, D.T. Karabay and M.V. Kovalenko

Sci. Rep., 2022, 12, 1177. external pageLink (open access) external pagePDF
Researchsquare (29 October 2021): external pageLink

On the Feasibility of All-​solid-state Batteries with LLZO as a Single Electrolyte

319. Thermal synthesis of conversion-type bismuth fluoride cathodes for high-energy-density Li-ion batteries
J.F. Baumgärtner, F. Krumeich, M. Wörle, K.V. Kravchyk and M.V. Kovalenko

Commun. Chem., 2022, 5, 6. external pageLink (open access) external pagePDF

Thermal synthesis of conversion-​type bismuth fluoride cathodes for high-​energy-density Li-​ion batteries

318. Size Segregation and Atomic Structural Coherence in Spontaneous Assemblies of Colloidal Cesium Lead Halide Nanocrystals
F. Bertolotti, A. Vivani, F. Ferri, P. Anzini, A. Cervellino, M.I. Bodnarchuk, G. Nedelcu, C. Bernasconi, M.V. Kovalenko, N. Masciocchi, and A. Guagliardi
Chem. Mater., 2022, 34, 2, 594–608external pageLink

317. Perspective on design and technical challenges of Li-garnet solid-state batteries
K. V. Kravchyk, M.V. Kovalenko

Sci. Technol. Adv. Mater., 2022, 23, 1. external pageLink (open access) external pagePDF

Perspective on design and technical challenges of Li-​garnet solid-​state batteries

316. Lead-Dominated Hyperfine Interaction Impacting the Carrier Spin Dynamics in Halide Perovskites
E. Kirstein, D.R. Yakovlev, M.M. Glazov, E. Evers, E.A. Zhukov, V.V. Belykh, N.E. Kopteva, D. Kudlacik, O. Nazarenko, D.N. Dirin, M.V. Kovalenko, M. Bayer
Adv. Mater.
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315. The Landé factors of electrons and holes in lead halide perovskites: universal dependence on the band gap
E. Kirstein, D. R. Yakovlev, M. M. Glazov, E. A. Zhukov, D. Kudlacik, I. V. Kalitukha, V. F. Sapega, G. S. Dimitriev, M. A. Semina, M. O. Nestoklon, E. L. Ivchenko, N. E. Kopteva, D. N. Dirin, O. Nazarenko, M. V. Kovalenko, A. Baumann, J. Höcker, V. Dyakonov, M. Bayer
Nat. Commun., 2022, 13, 3062. external pageLink (open access) external pagePDF
ArXiv (31 December 2021): external pageLink, external pagePDF

314. Atomic-Level Description of Thermal Fluctuations in Inorganic Lead Halide Perovskites
O. Cannelli, J. Wiktor, N. Colonna, L. Leroy, M. Puppin, C. Bacellar, I. Sadykov, F. Krieg, G. Smolentsev, M.V. Kovalenko, A. Pasquarello, M. Chergui, and G.F. Mancini
J. Phys. Chem. Lett., 2022, 13, 15, 3382–3391external pageLink (open access) external pagePDF
ArXiv (5 October 2021): external pageLink, external pagePDF

313. Synthesis and Characterization of the Ternary Nitride Semiconductor Zn2VN3: Theoretical Prediction, Combinatorial Screening, and Epitaxial Stabilization
S. Zhuk, A.A. Kistanov, S.C. Boehme, N. Ott, F. La Mattina, M. Stiefel, M.V. Kovalenko, and S. Siol

Chem. Mater., 2021, 33, 23, 9306–9316. external pageLink
ArXiv (1 September 2021): external pageLink, external pagePDF

312. Scalable fabrication of efficient p-n junction lead sulfide quantum dot solar cells
V.M. Goossens, N.V. Sukharevska, D.N. Dirin, M.V. Kovalenko, M.A. Loi

Cell Rep. Phys. Sci., 2021, 2, 100655. external pageLink (open access) external pagePDF

311. To nano or not to nano for bright halide perovskite emitters
J. Shamsi, G. Rainò, M.V. Kovalenko & S.D. Stranks

Nat. Nanotechnol., 202116, 1164–1168. external pageLink

310. Highly Concentrated, Zwitterionic Ligand-Capped Mn2+:CsPb(BrxCl1–x)3 Nanocrystals as Bright Scintillators for Fast Neutron Imaging
F. Montanarella, K.M. McCall, K. Sakhatskyi, S. Yakunin, P. Trtik, C. Bernasconi, I. Cherniukh, D. Mannes, M.I. Bodnarchuk, M. Strobl, B. Walfort, and M.V. Kovalenko

ACS Energy Lett., 2021, 6, 4365–4373. external pageLink (open access) external pagePDF

Highly Concentrated, Zwitterionic Ligand-​Capped Mn2+:CsPb(BrxCl1–x)3 Nanocrystals as Bright Scintillators for Fast Neutron Imaging

309. Optical Probing of Crystal Lattice Configurations in Single CsPbBr3 Nanoplatelets
A. Schmitz, F. Montanarella, L.L. Schaberg, M. Abdelbaky, M.V. Kovalenko, and G.Bacher
Nano Lett., 2021, 21, 21, 9085–9092. external pageLink

308. Luminescent Lead Halide Ionic Liquids for High-Spatial-Resolution Fast Neutron Imaging
V. Morad, K.M. McCall, K. Sakhatskyi, E. Lehmann, E. Lehmann, B. Walfort, A.S. Losko, P. Trtik, M. Strobl, S. Yakunin, and M.V. Kovalenko
ACS Photonics, 2021, 8, 11, 3357–3364. external pageLink (open access) external pagePDF

Luminescent Lead Halide Ionic Liquids for High-​Spatial-Resolution Fast Neutron Imaging

307. Unraveling the shell growth pathways of Pd-Pt core-shell nanocubes at atomic level by in situ liquid cell electron microscopy featured
W. Dachraoui, M.I. Bodnarchuk, A. Vogel, M.V. Kovalenko, and R. Erni
Appl. Phys. Rev.
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306. Shape-Directed Co-Assembly of Lead Halide Perovskite Nanocubes with Dielectric Nanodisks into Binary Nanocrystal Superlattices
I. Cherniukh, G. Rainò, T.V. Sekh, C. Zhu, Y. Shynkarenko, R.A. John, E. Kobiyama, R.F. Mahrt, T. Stöferle, R. Erni, M.V. Kovalenko, and M.I. Bodnarchuk
ACS Nano
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Shape-Directed Co-Assembly of Lead Halide Perovskite Nanocubes with Dielectric Nanodisks into Binary Nanocrystal Superlattices

305. Building a Better Li-Garnet Solid Electrolyte/Metallic Li Interface with Antimony
R. Dubey, J. Sastre, C. Cancellieri, F. Okur, A. Forster, L. Pompizii, A. Priebe, Y. E. Romanyuk, L.P.H. Jeurgens, M.V. Kovalenko, K.V. Kravchyk
Adv. Energy Mater., 2021, 12, 2102086external pageLink (open access) external pagePDF

Building a Better Li-Garnet Solid Electrolyte/Metallic Li Interface with Antimony

304. Local Structure of Multinary Hybrid Lead Halide Perovskites Investigated by Nuclear Quadrupole Resonance Spectroscopy
M. Aebli, N. Porenta, N. Aregger, and M.V. Kovalenko
Chem. Mater., 2021, 33, 17, 6965–6973external pageLink (open access) external pagePDF

Local Structure of Multinary Hybrid Lead Halide Perovskites Investigated by Nuclear Quadrupole Resonance Spectroscopy

303. Temperature-Independent Dielectric Constant in CsPbBr3 Nanocrystals Revealed by Linear Absorption Spectroscopy
W. Shcherbakov-Wu, P.C. Sercel, F. Krieg, M.V. Kovalenko, and W.A. Tisdale
J. Phys. Chem. Lett, 2021, 12, 8088–8095external pageLink

302. Efficient Amplified Spontaneous Emission from Solution-Processed CsPbBr3 Nanocrystal Microcavities under Continuous Wave Excitation
M. Athanasiou, P. Papagiorgis, A. Manoli, C. Bernasconi, M.I. Bodnarchuk, M.V. Kovalenko, and G. Itskos
ACS Photonics, 2021, 8, 2120–2129external pageLink

301. On the Mechanism of Alkylammonium Ligands Binding to the Surface of CsPbBr3 Nanocrystals
A. Stelmakh, M. Aebli, A. Baumketner, and M.V. Kovalenko
Chem. Mater., 2021, 33, 5962–5973external pageLink (open access) external pagePDF

On the Mechanism of Alkylammonium Ligands Binding to the Surface of CsPbBr3 Nanocrystals
On the Mechanism of Alkylammonium Ligands Binding to the Surface of CsPbBr3 Nanocrystals

300. State of the Art and Prospects for Halide Perovskite Nanocrystals
A. Dey, J. Ye, A. De, E. Debroye, S.K. Ha, E. Bladt, A.S. Kshirsagar, Z. Wang, J. Yin, Y. Wang, L.N. Quan, F. Yan, M. Gao, X. Li, J. Shamsi, T. Debnath, M. Cao, M.A. Scheel, S. Kumar, J.A. Steele, M. Gerhard, M. Gerhard, L. Chouhan, K. Xu, X. Wu, Y. Li, Y. Zhang, A. Dutta, C. Han, I. Vincon, A.L. Rogach, A. Nag, A. Samanta, B.A. Korgel, C.-J. Shih, D.R. Gamelin, D.H. Son, H. Zeng, H. Zhong, H. Sun, H.V. Demir, I.G. Scheblykin, I. Mora-Seró, J.K. Stolarczyk, J.Z. Zhang, J. Feldmann, J. Hofkens, J.M. Luther, J. Pérez-Prieto, L. Li, L. Manna, M.I. Bodnarchuk, M.V. Kovalenko, M.B.J. Roeffaers, N. Pradhan, O.F. Mohammed, O.M. Bakr, P. Yang, P. Müller-Buschbaum, P.V. Kamat, Q. Bao, Q. Zhang, R. Krahne, R.E. Galian, S.D. Stranks, S. Bals, V. Biju, W.A. Tisdale, Y.Yan, R.L.Z. Hoye, and L. Polavarapu
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State of the Art and Prospects for Halide Perovskite Nanocrystals

299. Perovskite Quantum Dots for Super-Resolution Optical Microscopy: Where Strong Photoluminescence Blinking Matters
L.G. Feld, Y. Shynkarenko, F. Krieg, G. Rainò, and M.V. Kovalenko
Adv. Optical Mater., 2021, 2100620. external pageLink (open access) external pagePDF

Perovskite Quantum Dots for Super-Resolution Optical Microscopy: Where Strong Photoluminescence Blinking Matters
Perovskite Quantum Dots for Super-Resolution Optical Microscopy: Where Strong Photoluminescence Blinking Matters

298. Perovskite-type superlattices from lead halide perovskite nanocubes
I. Cherniukh, G. Rainò, T. Stöferle, M. Burian, A. Travesset, D. Naumenko, H. Amenitsch, R. Erni, R.F. Mahrt, M.I. Bodnarchuk & M.V. Kovalenko
Nature, 2021, 593, 535–542. external pageLink

Perovskite-​type superlattices from lead halide perovskite nanocubes

297. Surface Functionalization of CsPbBr3 Νanocrystals for Photonic Applications
A. Manoli, P. Papagiorgis, M. Sergides, C. Bernasconi, M. Athanasiou, S Pozov, S.A. Choulis, M.I. Bodnarchuk, M.V. Kovalenko, A.Othonos, and G. Itskos
ACS Appl. Nano Mater., 2021, 4, 5, 5084–5097. external pageLink

296. Break-Even Analysis of All-Solid-State Batteries with Li-Garnet Solid Electrolytes
K.V. Kravchyk, F. Okur, and M.V. Kovalenko
ACS Energy Lett., 2021, 62202–2207. external pageLink (open access) external pagePDF

Break-Even Analysis of All-Solid-State Batteries with Li-Garnet Solid Electrolytes

295. Scalable PbS Quantum Dot Solar Cell Production by Blade Coating from Stable Inks
N. Sukharevska, D. Bederak, V.M. Goossens, J. Momand, H. Duim, D.N. Dirin, M.V. Kovalenko, B.J. Kooi, and M.A. Loi
ACS Appl. Mater. Interfaces, 2021, 13, 4, 5195–5207. external pageLink (open access) external pagePDF

Scalable PbS Quantum Dot Solar Cell Production by Blade Coating from Stable Inks

294. Lone-Pair-Induced Structural Ordering in the Mixed-Valent 0D Metal-Halides Rb23BiIIIxSbIII7–xSbV2Cl54 (0 ≤ x ≤ 7)
B.M. Benin, K.M. McCall, M. Wörle, D. Borgeaud, T. Vonderach, K. Sakhatskyi, S. Yakunin, D. Günther, and M.V. Kovalenko
Chem. Mater., 2021, 33, 7, 2408–2419. external pageLink (open access) external pagePDF

Lone-​Pair-Induced Structural Ordering in the Mixed-​Valent 0D Metal-​Halides Rb23BiIIIxSbIII7–xSbV2Cl54 (0 ≤ x ≤ 7)

293. Light-Induced Paramagnetism in Colloidal Ag+-Doped CdSe Nanoplatelets
A. Najafi, M. Sharma, S. Delikanli, A. Bhattacharya, J.R. Murphy, J. Pientka, A. Sharma, A.P. Quinn, O. Erdem, S. Kattel, Y. Kelestemur, M.V. Kovalenko, W.D. Rice, H. Volkan Demir, and A. Petrou
J. Phys. Chem. Lett., 2021, 12, 11, 2892–2899. external pageLink

292. Shortwave infrared-absorbing squaraine dyes for all-organic optical upconversion devices
K. Strassel, W.-H. Hu, S. Osbild, D. Padula, D. Rentsch, S. Yakunin, Y. Shynkarenko, M. Kovalenko, F. Nüesch, R. Hany, & M. Bauer
Sci. Technol. Adv. Mater., 2021, 22, 1, 194–204. external pageLink (open access) external pagePDF

291. Quantifying Photoinduced Polaronic Distortions in Inorganic Lead Halide Perovskites Nanocrystals
O. Cannelli, N. Colonna, M. Puppin, T. Rossi, D. Kinschel, L. Leroy, J. Löffler, A.M. March, G. Doumy, A.Al Haddad, M. Tu, Y. Kumagai, D. Walko, G. Smolentsev, F. Krieg, S.C. Boehme, M.V. Kovalenko, M. Chergui, G.F. Mancini
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290. Radiative lifetime-encoded unicolour security tags using perovskite nanocrystals
S. Yakunin, J. Chaaban, B.M. Benin, I. Cherniukh, C. Bernasconi, A. Landuyt, Y. Shynkarenko, S. Bolat, C. Hofer, Y.E. Romanyuk, S. Cattaneo, S.I. Pokutnyi, R.D. Schaller, M.I. Bodnarchuk, D. Poulikakos & M.V. Kovalenko
Nat. Commun., 2021, 12, 981. external pageLink (open access) external pagePDF

Radiative lifetime-encoded unicolour security tags using perovskite nanocrystals

289. Hybrid 0D Antimony Halides as Air‐Stable Luminophores for High‐Spatial‐Resolution Remote Thermography
V. Morad, S. Yakunin, B.M. Benin, Y. Shynkarenko, M.J. Grotevent, I. Shorubalko, S.C. Boehme, M.V. Kovalenko
Adv. Mater., 2021, 2007355. external pageLink (open access) external pagePDF

Exploiting the Lability of Metal Halide Perovskites for Doping Semiconductor Nanocomposites

288. Exploiting the Lability of Metal Halide Perovskites for Doping Semiconductor Nanocomposites
M. Calcabrini, A. Genç, Y. Liu, T. Kleinhanns, S. Lee, D.N. Dirin, Q.A. Akkerman, M.V. Kovalenko, J.Arbiol, and M. Ibáñez
ACS Energy Lett., 2021, 6, 581–587. external pageLink (open access) external pagePDF

Exploiting the Lability of Metal Halide Perovskites for Doping Semiconductor Nanocomposites

287. AlCl3‐saturated ionic liquid anolyte with an excess of AlCl3 for Al‐graphite dual‐ion batteries
S. Wang, M.V. Kovalenko, K.V. Kravchyk
Batteries & Supercaps, 2021, 4, 929–933. external pageLink (open access) external pagePDF

AlCl3‐saturated ionic liquid anolyte with an excess of AlCl3 for Al‐graphite dual‐ion batteries

286. Pressure‐Induced Perovskite‐to‐non‐Perovskite Phase Transition in CsPbBr3
A. Noculak, S.C. Boehme, M. Aebli, Y. Shynkarenko, K.M. McCall, M.V Kovalenko
Helv. Chim. Acta, 2021, 104, e2000222. external pageLink

S-Rich PbS Quantum Dots: A Promising p-Type Material for Optoelectronic Devices

285. S-Rich PbS Quantum Dots: A Promising p-Type Material for Optoelectronic Devices
D. Bederak, D.N. Dirin, N. Sukharevska, J. Momand, M.V. Kovalenko, and M.A. Loi
Chem. Mater, 
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S-Rich PbS Quantum Dots: A Promising p-Type Material for Optoelectronic Devices
S-​Rich PbS Quantum Dots: A Promising p-​Type Material for Optoelectronic Devices

284. An overview and prospective on Al and Al-ion battery technologies
G.A. Elia, K.V. Kravchyk, M.V. Kovalenko, J. Chacóne, A. Holland, R.G.A.Wills
J. Power Sources2021, 481, 228870. external pageLink (open access) external pagePDF

283. Monodisperse Long-Chain Sulfobetaine-Capped CsPbBr3 Nanocrystals and Their Superfluorescent Assemblies
F. Krieg, P.C. Sercel, M. Burian, H. Andrusiv, M.I. Bodnarchuk, T. Stöferle, R.F. Mahrt, D. Naumenko, H. Amenitsch, G. Rainò, and M.V. Kovalenko
ACS Cent. Sci., 2021, 7, 1, 135–144. external pageLink (open access) external pagePDF

Monodisperse Long-Chain Sulfobetaine-Capped CsPbBr3 Nanocrystals and Their Superfluorescent Assemblies
Monodisperse Long-​Chain Sulfobetaine-​Capped CsPbBr3 Nanocrystals and Their Superfluorescent Assemblies

282. Temperature-Dependent Charge Carrier Transfer in Colloidal Quantum Dot/Graphene Infrared Photodetectors
M. Grotevent, C.U. Hail, S. Yakunin, D. Bachmann, G. Kara, D.N. Dirin, M. Calame, D. Poulikakos, M.V. Kovalenko, I. Shorubalko
ACS Appl. Mater. Interfaces, 202113, 1, 848–856. external pageLink

Temperature-Dependent Charge Carrier Transfer in Colloidal Quantum Dot/Graphene Infrared Photodetectors

281. Colloidal HgTe Quantum Dot/Graphene Phototransistor with a Spectral Sensitivity Beyond 3 µm
M. Grotevent, C.U. Hail, S. Yakunin, D. Bachmann, M. Calame, D. Poulikakos, M.V. Kovalenko, I. Shorubalko
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Colloidal HgTe Quantum Dot/Graphene Phototransistor with a Spectral Sensitivity Beyond 3 µm

280. Enhanced Room‐Temperature Photoluminescence Quantum Yield in Morphology Controlled J‐Aggregates
S.B. Anantharaman, J. Kohlbrecher, G. Rainò, S. Yakunin, T. Stöferle, J. Patel, M. Kovalenko, R.F. Mahrt, F.A. Nüesch, J. Heier
Adv. Sci., 2021, 8, 1903080. external pageLink (open access) external pagePDF

279. Laser Patterning of High‐Mass‐Loading Graphite Anodes for High‐​Performance Li‐​Ion Batteries
R. Dubey, M.-D. Zwahlen, Y. Shynkarenko, S. Yakunin, A. Fuerst, M.V Kovalenko, K.V. Kravchyk
Batteries & Supercaps, 
2021, 4, 464468. external pageLink (open access) external pagePDF

Laser Patterning of High‐Mass‐Loading Graphite Anodes for High‐​Performance Li‐​Ion Batteries

278. Expanding the 0D Rb7M3X16 (M = Sb, Bi; X = Br, I) Family: Dual‐Band Luminescence in Rb7Sb3Br16
K.M. McCall, B.M. Benin, M. Wörle, T. Vonderach, D. Günther, M.V. Kovalenko
Helv. Chim. Acta
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Expanding the 0D Rb7M3X16 (M = Sb, Bi; X = Br, I) Family: Dual‐Band Luminescence in Rb7Sb3Br16

277. Exciton–Ligand Interactions in PbS Quantum Dots Capped with Metal Chalcogenides
P. Papagiorgis, D. Tsokkou, K. Gahlot, L. Protesescu, A. Manoli, F. Hermerschmidt, C. Christodoulou, S.A. Choulis, M.V. Kovalenko, A.Othonos, and G. Itskos
J. Phys. Chem. C, 
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276. The dark exciton ground state promotes photon-pair emission in individual perovskite nanocrystals
P. Tamarat, L. Hou, J. Trebbia, A. Swarnkar, L. Biadala, Y. Louyer, M.I. Bodnarchuk, M.V. Kovalenko, J. Even & B. Lounis
Nat. Commun.
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275. On the Colloidal Stability of PbS Quantum Dots Capped with Methylammonium Lead Iodide Ligands
D. Bederak, N. Sukharevska, S. Kahmann, M. Abdu-Aguye, H. Duim, D.N. Dirin, M.V. Kovalenko, G. Portale, and M.A. Loi
ACS Appl. Mater. Interfaces
, 2020, 12, 47, 52959–52966. external pageLink (open access) external pagePDF

274. Unraveling the Origin of the Long Fluorescence Decay Component of Cesium Lead Halide Perovskite Nanocrystals
M.A. Becker, C. Bernasconi, M.I. Bodnarchuk, G. Rainò, M.V. Kovalenko, D.J. Norris, R.F. Mahrt, and T. Stöferle
ACS Nano
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273. Monodisperse CoSb nanocrystals as high-performance anode material for Li-ion batteries
S. Wang, M. He, M. Walter, K.V. Kravchyk and M.V. Kovalenko
Chem. Commun., 2020, 56, 13872-13875. external pageLink (open access) external pagePDF

Monodisperse CoSb nanocrystals as high-performance anode material for Li-ion batteries

272. Electron transport in iodide-capped core@shell PbTe@PbS colloidal nanocrystal solids
R. Miranti, R.D. Septianto, M. Ibáñez, M.V. Kovalenko, N. Matsushita, Y. Iwasa, and S.Z. Bisri
Appl. Phys. Lett., 2020, 117, 173101. external pageLink

271. The Pitfalls in Nonaqueous Electrochemistry of Al‐Ion and Al Dual‐Ion Batteries
K.V. Kravchyk, M.V. Kovalenko
Adv. Energy Mater., 2020, 2002151. external pageLink (open access) external pagePDF

270. Polaron and Spin Dynamics in Organic–Inorganic Lead Halide Perovskite Nanocrystals
M. Shrivastava, M.I. Bodnarchuk, A. Hazarika, J.M. Luther, M.C. Beard, M.V. Kovalenko, K.V. Adarsh
Adv. Optical Mater., 2020, 2001016. external pageLink

269. Building better dual-ion batteries
K.V. Kravchyk and M.V. Kovalenko
MRS Energy and Sustainability, 2020, 7, E36. external pageLink

268. Superradiant emission from self-assembled light emitters: From molecules to quantum dots
G. Rainò, H. Utzat, M.G. Bawendi and M.V. Kovalenko
MRS Bulletin, 2020, 45, 841-848. external pageLink

267. Solid-state NMR and NQR Spectroscopy of Lead-Halide Perovskite Materials
L. Piveteau, V. Morad, and M.V. Kovalenko
J. Am. Chem. Soc., 2020, 142, 46, 19413–19437. external pageLink (open access) external pagePDFexternal page

Solid-​state NMR and NQR Spectroscopy of Lead-​Halide Perovskite Materials

266. Fast Neutron Imaging with Semiconductor Nanocrystal Scintillators
K. McCall, K. Sakhatskyi, E.H. Lehmann, B. Walfort, A. Losko, F. Montanarella, M.I. Bodnarchuk, F. Krieg, Y. Kelestemur, D. Mannes, Y. Shynkarenko, S. Yakunin, and M.V. Kovalenko
ACS Nano, 2020, 14, 11, 14686–14697. external pageLink (open access) external pagePDF

Fast Neutron Imaging with Semiconductor Nanocrystal Scintillators

265. Aluminum electrolytes for Al dual-ion batteries
K.V. Kravchyk & M.V. Kovalenko
Communications Chemistry2020, 3, 120. external pageLink (open access) external pagePDF

Aluminum electrolytes for Al dual-ion batteries

264. Efficient Lone Pair-Driven Luminescence: Structure-Property Relationships in Emissive 5s2 Metal Halides
K. McCall, V. Morad, B. Benin, and M.V. Kovalenko
ACS Materials Lett., 2020, 9, 1218–1232. external pageLink (open access) external pagePDF

Efficient Lone Pair-​Driven Luminescence: Structure-​Property Relationships in Emissive 5s2 Metal Halides
Efficient Lone Pair-​Driven Luminescence: Structure-​Property Relationships in Emissive 5s2 Metal Halides

263. Negative Thermal Quenching in FASnI3 Perovskite Single Crystals and Thin Films
S. Kahmann, O. Nazarenko, S. Shao, O. Hordiichuk, M. Kepenekian, J. Even, M.V. Kovalenko, G.R. Blake, and M.A. Loi
ACS Energy Lett., 2020, 5, 2512–2519. external pageLink (open access) external pagePDF

262. Electrophoretic deposition of nanoporous oxide coatings from concentrated CuO nanoparticle dispersions
L. Dörner, P. Schmutz, R. Kaegi, M.V. Kovalenko, and L.P.H. Jeurgens
Langmuir, 2020, 36, 28, 8075–8085. external pageLink

261. Bulk and Nanocrystalline Cesium Lead-​Halide Perovskites as Seen by Halide Magnetic Resonance
L. Piveteau, M. Aebli, N. Yazdani, M. Millen, L. Korosec, F. Krieg, B.M. Benin, V. Morad, C. Piveteau, T. Shiroka, A. Comas-​Vives, C. Copéret, A.M. Lindenberg, V. Wood, R. Verel, and M.V. Kovalenko
ACS Cent. Sci., 2020, 6, 7, 1138–1149. external pageLink (open access) external pagePDF

Bulk and Nanocrystalline Cesium Lead-Halide Perovskites as Seen by Halide Magnetic Resonance

260. Nano-​domains assisted energy transfer in amphiphilic polymer conetworks for wearable luminescent solar concentrators
C.-S. Huang, K. Jakubowski, S. Ulrich, S. Yakunin, M. Clerc, C. Toncelli, R.M. Rossi, M.V. Kovalenko, L.F. Boesel
Nano Energy, 2020, 105039. external pageLink (open access) external pagePDF

259. Supramolecular Approach for Fine-Tuning of the Bright Luminescence from Zero-Dimensional Antimony(III) Halides
V. Morad, S. Yakunin, and M.V. Kovalenko

ACS Materials Lett., 2020, 2, 845–852. external pageLink
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Supramolecular Approach for Fine-​Tuning of the Bright Luminescence from Zero-​Dimensional Antimony(III) Halides
Supramolecular Approach for Fine-​Tuning of the Bright Luminescence from Zero-​Dimensional Antimony(III) Halides

258. Silicon Oxycarbide-Antimony Nanocomposites for High-Performance Li-Ion Battery Anodes
R. Dubey, P.V. Sasikumar, N. Cerboni, M. Aebli, F. Krumeich, G. Blugan, K.V. Kravchyk, T. Graule and M.V. Kovalenko

Nanoscale, 2020, 12, 13540-13547. external pageLink
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Silicon Oxycarbide-Antimony Nanocomposites for High-Performance Li-Ion Battery Anodes

257. Bright Blue and Green Luminescence of Sb(III) in Double Perovskite Cs2MInCl6 (M = Na, K) Matrices
A. Noculak, V. Morad, K.M. McCall, S. Yakunin, Y. Shynkarenko, M. Worle, M.V. Kovalenko

Chem. Mater., 2020, 32, 12, 5118–5124. external pageLink
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Bright Blue and Green Luminescence of Sb(III) in Double Perovskite Cs2MInCl6 (M = Na, K) Matrices

256. The Rb7Bi3‐3xSb3xCl16 family: A Fully Inorganic Solid Solution with Room‐Temperature Luminescent Members
B.M. Benin, K.M. McCall, M. Wörle, V. Morad, M. Aebli, S. Yakunin, Y. Shynkarenko, and M.V. Kovalenko

Angew. Chem. Int. Ed., 2020, 59, 210. external pageLink
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The Rb7Bi3‐3xSb3xCl16 family: A Fully Inorganic Solid Solution with Room‐Temperature Luminescent Members

255. White CsPbBr3: Characterizing the One‐Dimensional Cesium Lead Bromide Polymorph
M. Aebli, B.M. Benin, K.M. McCall, V. Morad, D. Thöny, H. Grützmacher, M.V. Kovalenko

Helv. Chim. Acta, 2020, 103, e2000080. external pageLink

White CsPbBr3: Characterizing the One‐Dimensional Cesium Lead Bromide Polymorph

254. Lead-Halide Scalar Couplings in 207Pb NMR of APbX3 Perovskites (A = Cs, Methylammonium, Formamidinium; X = Cl, Br, I)
M. Aebli, L. Piveteau, O. Nazarenko, B.M. Benin, F. Krieg, R. Verel, M.V. Kovalenko
Scientific Reports, 2020, 10, 8229. external pageLink (open access) external pagePDF

Lead-​Halide Scalar Couplings in 207Pb NMR of APbX3 Perovskites (A = Cs, Methylammonium, Formamidinium; X = Cl, Br, I)

253. Memories in the Photoluminescence Intermittency of Single Cesium Lead Bromide Nanocrystals
L. Hou, C. Zhao, X. Yuan, J. Zhao, F. Krieg, P. Tamarat, M.V. Kovalenko, C. Guo and B. Lounis

Nanoscale, 202012, 6795-6802
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252. Hot Carrier Dynamics in Perovskite Nanocrystal Solids: Role of the cold carriers, nanoconfinement and the surface
T.R. Hopper, A. Gorodetsky, A. Jeong, F. Krieg, M.I. Bodnarchuk, M. Maimaris, M. Chaplain, T.J. Macdonald, X. Huang, R. Lovrincic, M.V. Kovalenko, A.A. Bakulin

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251. CsPbBr3 Nanocrystal Films: Deviations from Bulk Vibrational and Optoelectronic Properties
S.G. Motti, F. Krieg, A.J. Ramadan, J.B. Patel, H.J. Snaith, M.V. Kovalenko, M.B. Johnston, L.M. Herz

Adv. Funct. Mater., 20201909904
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250. Vibrational dynamics in lead halide hybrid perovskites investigated by Raman spectroscopy
J. Ibaceta-Jaña, R. Muydinov, P. Rosado, H. Mirhosseini, M. Chugh, O. Nazarenko, D.N. Dirin, D. Heinrich, M.R. Wagner, T.D. Kühne, B. Szyszka, M.V. Kovalenko, and A. Hoffmann

Phys. Chem. Chem. Phys., 202022, 5604-5614
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249. Colloidal-ALD-grown core/shell CdSe/CdS nanoplatelets as seen by DNP enhanced PASS-PIETA NMR spectroscopy
L. Piveteau, D. Dirin, C.P. Gordon, B.J. Walder, T.-C. Ong, L. Emsley, C. Copéret, M.V. Kovalenko

Nano Lett., 202020, 5, 3003–3018
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Colloidal-ALD-grown core/shell CdSe/CdS nanoplatelets as seen by DNP enhanced PASS-PIETA NMR spectroscopy

248. Exclusive Electron Transport in Core@Shell PbTe@PbS Colloidal Semiconductor Nanocrystal Assemblies
R. Miranti, D. Shin, R.D. Septianto, M. Ibáñez, M.V. Kovalenko, N. Matsushita, Y. Iwasa, S.Z. Bisri

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247. Colloidal Antimony Sulfide Nanoparticles as a High-Performance Anode Material for Li-ion and Na-ion Batteries
K.V. Kravchyk, M.V. Kovalenko, M.I. Bodnarchuk

Scientific Reports, 2020, 10, 2554. external pageLink
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Colloidal Antimony Sulfide Nanoparticles as a High-Performance Anode Material for Li-ion and Na-ion Batteries

246. InGaN Nanohole Arrays Coated by Lead Halide Perovskite Nanocrystals for Solid-State Lighting
M. Athanasiou, P. Papagiorgis, A. Manoli, C. Bernasconi, N. Poyiatzis, P.-M. Coulon, P. Shields, M.I. Bodnarchuk, M.V. Kovalenko, T. Wang, G. Itskos

ACS Appl. Nano Mater., 2020, 3, 3, 2167-2175. external pageLink
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245. Structural Evolution of Iron(III) Trifluoroacetate Upon Thermal Decomposition: Chains, Layers and Rings
M. Wörle, C.P. Guntlin, L. Gyr, M.T. Sougrati, C.-H. Lambert, K.V. Kravchyk, R. Zenobi, M.V. Kovalenko

Chem. Mater., 2020, 32, 6, 2482-2488. external pageLink
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Structural Evolution of Iron(III) Trifluoroacetate Upon Thermal Decomposition: Chains, Layers and Rings
Structural Evolution of Iron(III) Trifluoroacetate Upon Thermal Decomposition: Chains, Layers and Rings

244. Limitations of Chloroaluminate Ionic Liquid Anolytes for Aluminum–Graphite Dual-Ion Batteries
K.V. Kravchyk, C. Seno, M.V. Kovalenko

ACS Energy Lett., 2020, 5, 2, 545-549. external pageLink
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Limitations of Chloroaluminate Ionic Liquid Anolytes for Aluminum–Graphite Dual-​Ion Batteries

243. Challenges and Benefits of Post-Lithium-ion Batteries
M. Walter, M.V. Kovalenko, K.V. Kravchyk

New J. Chem., 2020, 44, 1677-1683. external pageLink
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Challenges and Benefits of Post-​Lithium-ion Batteries

242. Kinetic modelling of intraband carrier relaxation in bulk and nanocrystalline lead-halide perovskites
T.R. Hopper, A. Jeong, A.A. Gorodetsky, F. Krieg, M.I. Bodnarchuk, X. Huang, R. Lovrincic, M.V. Kovalenko, and A.A. Bakulin
Phys. Chem. Chem. Phys., 2020, 22, 17605-17611. external pageLink (open access) external pagePDF

241. Evidence of large polarons in photoemission band mapping of the perovskite semiconductor CsPbBr3
M. Puppin, S. Polishchuk, N. Colonna, A. Crepaldi, D.N. Dirin, O. Nazarenko, R.De Gennaro, G. Gatti, S. Roth, T. Barillot, L. Poletto, R. P. Xian, L. Rettig, M. Wolf, R. Ernstorfer, M.V. Kovalenko, N. Marzari, M. Grioni, and M. Chergui
Phys. Rev. Lett. 2020, 124, 206402. external pageLink (open access) external pagePDF

240. A Small Cationic Organo-Copper Cluster as Thermally Robust Highly Photo- and Electro Luminescent Material
M. Olaru, E. Rychagova, S.Yu. Ketkov, Y. Shynkarenko, S. Yakunin, M.V. Kovalenko, A. Yablonskiy, B.A. Andreev, F. Kleemiss, J. Beckmann, M. Vogt

J. Am. Chem. Soc., 2020, 142, 1, 373-381. external pageLink

239. Tracking the Fluorescence Lifetimes of Cesium Lead Halide Perovskite Nanocrystals During their Synthesis Using a Fully Automated Optofluidic Platform
I. Lignos, R.M. Maceiczyk, M.V. Kovalenko, S. Stavrakis

Chem. Mater., 2020, 32, 1, 27-37. external pageLink

Tracking the Fluorescence Lifetimes of Cesium Lead Halide Perovskite Nanocrystals During their Synthesis Using a Fully Automated Optofluidic Platform

238. Improved Reproducibility of PbS CQDs Solar Cells by Using ATOMIC Layer Deposited TiO2
N. Sukharevska, D. Bederak, D. Dirin, M. Kovalenko, M.A. Loi
Energy Technol., 2020, 8, 1900887. external pageLink
 (open access) external pagePDF

237. Self‐Assembly of Proteinaceous Shells Around Positively Charged Gold Nanomaterials Enhances Colloidal Stability in High Ionic Strength Buffers
E. Sasaki, R.M. Dragoman, S. Mantri, D.N. Dirin, M.V. Kovalenko, D. Hilvert
ChemBioChem, 2020, 21, 74–79. external pageLink

236. Stable Cesium Formamidinium Lead Halide Perovskites: A Comparison of Photophysics and Phase Purity in Thin Films and Single Crystals
B.G.H.M. Groeneveld, S. Adjokatse, O. Nazarenko, H.H. Fang, G.R. Blake, G. Portale, H. Duim, G.H. Brink, M.V. Kovalenko, M.A. Loi
Energy Technol., 2020, 8, 1901041. external pageLink
 (open access) external pagePDF

235. Amplified Spontaneous Emission Threshold Reduction and Operational Stability Improvement in CsPbBr3 Nanocrystals Films by Hydrophobic Functionalization of the Substrate
M.L. De Giorgi, F. Krieg, M.V. Kovalenko & M. Anni

Sci. Rep., 2019, 9, 17964. external pageLink (open access) external pagePDF

234. Colloidal CdSe Quantum Wells with Graded Shell Composition for Low-Threshold Amplified Spontaneous Emission and Highly Efficient Electroluminescence
Y. Kelestemur, Y. Shynkarenko, M. Anni, S. Yakunin, M.L. De Giorgi, M.V. Kovalenko

ACS Nano, 2019, 13, 12, 13899-13909. external pageLink
(open access) external pagePDF

Stable Ultra-Concentrated and Ultra-Dilute Colloids of CsPbX3 (X=Cl, Br) Nanocrystals using Natural Lecithin as a Capping Ligand

233. Stable Ultra-Concentrated and Ultra-Dilute Colloids of CsPbX3 (X=Cl, Br) Nanocrystals using Natural Lecithin as a Capping Ligand
F. Krieg, Q.K. Ong, M. Burian, G. Raino, D. Naumenko, H. Amenitsch, A. Süess, M. Grotevent, F. Krumeich, M.I. Bodnarchuk, I. Shorubalko, F. Stellacci, M.V. Kovalenko

J. Am. Chem. Soc., 2019, 141, 50, 19839-19849. external pageLink (open access) external pagePDF
 (external pageACS Live slides)

Stable Ultra-Concentrated and Ultra-Dilute Colloids of CsPbX3 (X=Cl, Br) Nanocrystals using Natural Lecithin as a Capping Ligand

232. Crystal Structure, Morphology and Surface Termination of Cyan-Emissive, 6-Monolayers-Thick CsPbBr3 Nanoplatelets from X-Ray Total Scattering
F. Bertolotti, G. Nedelcu, A. Vivani, A. Cervellino, N. Masciocchi, A. Guagliardi, M.V. Kovalenko

ACS Nano, 2019, 13, 12, 14294-14307. external pageLink (open access) external pagePDF
, (external pageACS Live slides)

Crystal Structure, Morphology and Surface Termination of Cyan-Emissive, 6-Monolayers-Thick CsPbBr3 Nanoplatelets from X-Ray Total Scattering

231. Manganese(II) in tetrahedral halide environment: factors governing bright green luminescence
V. Morad, I. Cherniukh, L. Pöttschacher, Y. Shynkarenko, S. Yakunin, M.V. Kovalenko
Chem. Mater., 2019, 31, 24, 10161-10169. external pageLink (open access) external pagePDF

Manganese(II) in tetrahedral halide environment: factors governing bright green luminescence
Manganese(II) in tetrahedral halide environment: factors governing bright green luminescence

230. Energy transfer from perovskite nanocrystals to dye molecules does not occur by FRET
F.J. Hofmann, M. Bodnarchuk, D.N. Dirin, J. Vogelsang, M.V. Kovalenko, J.M. Lupton
Nano Lett., 2019, 19, 12, 8896-8902. external pageLink

229. Hybrid Metal Halides with Multiple Photoluminescence Centers
M. Li, J. Zhou, G. Zhou, M.S. Molokeev, J. Zhao, V. Morad, M.V. Kovalenko, and Zhiguo Xia
Angew. Chem., Int. Ed., 2019, 58, 2–8. external pageLink

228. Size-Dependent Biexciton Spectrum in CsPbBr3 Perovskite Nanocrystals
M.N. Ashner, K.E. Shulenberger, F. Krieg, E.R. Powers, M.V. Kovalenko, M.G. Bawendi, W.A. Tisdale
ACS Energy Lett, 2019, 4, 11, 2639-2645. external pageLink

227. Direct Synthesis of Quaternary Alkylammonium Capped Perovskite Nanocrystals for Efficient Blue and Green Light-Emitting Diodes
Y. Shynkarenko, M.I. Bodnarchuk, C. Bernasconi, Y. Berezovska, V. Verteletskyi, S. Ochsenbein, M.V. Kovalenko
ACS Energy Lett, 2019, 4, 11, 2703-2711. external pageLink (open access) external pagePDF

Direct Synthesis of Quaternary Alkylammonium Capped Perovskite Nanocrystals for Efficient Blue and Green Light-Emitting Diodes

226. Microcarrier-Assisted Inorganic Shelling of Lead Halide Perovskite Nanocrystals
D.N Dirin, B.M. Benin, S. Yakunin, F. Krumeich, G. Raino, R. Frison, M.V. Kovalenko
ACS Nano, 2019, 3, 10, 11642-11652. external pageLink (open access) external pagePDF

Microcarrier-Assisted Inorganic Shelling of Lead Halide Perovskite Nanocrystals

225. Zeolite-Templated Carbon as a Stable, High Power Magnesium-Ion Cathode Material
R. J.-C. Dubey, T. Colijn, M. Aebli, E.E. Hanson, R. Widmer, K.V. Kravchyk, M.V. Kovalenko, N.P. Stadie
ACS Appl. Mater. Interfaces, 2019, 11, 43, 39902-39909. external pageLink

Zeolite-Templated Carbon as a Stable, High Power Magnesium-Ion Cathode Material

224. Anatase TiO2 Nanorods as Cathode Materials for Aluminum-Ion Batteries
S. Wang, K.V. Kravchyk, S. Pigeot-Rémy, W. Tang, F. Krumeich, M. Wörle, M.I. Bodnarchuk, S. Cassaignon, O. Durupthy, S. Zhao, C. Sanchez, M.V. Kovalenko
ACS Appl. Nano Mater., 2019, 2, 10, 6428-6435. external pageLink

Anatase TiO2 Nanorods as Cathode Materials for Aluminum-Ion Batteries

223. Setting an Upper Bound to the Biexciton Binding Energy in CsPbBr3 Perovskite Nanocrystals
K.E. Shulenberger, M.N. Ashner, S.K. Ha, F. Krieg, M.V. Kovalenko, W.A. Tisdale, M.G. Bawendi
J. Phys. Chem. Lett., 2019, 10, 18, 5680-5686. external pageLink

222. Building better all-solid-state batteries with Li-garnet solid electrolytes and metalloid anodes
S. Afyon, K.V. Kravchyk, S. Wang, J. van den Broek, C. Hänsel, M. V. Kovalenko and J.L.M. Rupp
J. Mater. Chem. A, 2019, 7, 21299-21308. external pageLink (open access) external pagePDF

Building better all-solid-state batteries with Li-garnet solid electrolytes and metalloid anodes

221. Cost-effective sol-gel synthesis of porous CuO nanoparticle aggregates with tunable specific surface area
L. Dörner, C. Cancellieri, B. Rheingans, M. Walter, R. Kägi, P. Schmutz, M.V. Kovalenko & L. Jeurgens
Scientific Reports, 2019, 9, 11758. external pageLink (open access) external pagePDF

220. Patterned Quantum Dot Photosensitive FETs for Medium Frequency Optoelectronics
A.G. Shulga, A.Yamamura, K. Tsuzuku, R.M. Dragoman, D.N. Dirin, S. Watanabe, M.V. Kovalenko, J. Takeya, M.A. Loi
Advanced Materials Technologies, 2019, 1900054. external pageLink

219. Rechargeable Dual-ion Batteries with Graphite as a Cathode: Key Challenges and Opportunities
K.V. Kravchyk, M.V. Kovalenko
Advanced Energy Materials , 2019, 1901749. external pageLink (open access) external pagePDF

Rechargeable Dual-ion Batteries with Graphite as a Cathode: Key Challenges and Opportunities

218. Silicon Oxycarbide—Tin Nanocomposite as a High‐Power‐Density Anode for Li‐Ion Batteries
R.J.‐C. Dubey, P.V.W. Sasikumar, F. Krumeich, G. Blugan, J. Kuebler, K.V. Kravchyk, T. Graule, M.V. Kovalenko
Advanced Science, 2019, 1901220. external pageLink (open access) external pagePDF

Silicon Oxycarbide—Tin Nanocomposite as a High‐Power‐Density Anode for Li‐Ion Batteries
Silicon Oxycarbide—Tin Nanocomposite as a High‐Power‐Density Anode for Li‐Ion Batteries

217. A high-voltage concept with sodium-ion conducting β-alumina for magnesium-sodium dual-ion batteries
K.V. Kravchyk, M. Walter and M.V. Kovalenko
Communications Chemistry, 2019, 2, 84. external pageLink (open access) external pagePDF

A high-voltage concept with sodium-ion conducting β-alumina for magnesium-sodium dual-ion batteries

216. High-resolution remote thermometry and thermography using luminescent low-dimensional tin-halide perovskites
S. Yakunin, B.M. Benin, Y. Shynkarenko, O. Nazarenko, M.I. Bodnarchuk, D.N. Dirin, C. Hofer, S. Cattaneo & M.V. Kovalenko
Nature Materials, 2019, 18, 846-852. external pageLink external pageview-only pdf link

High-resolution remote thermometry and thermography using luminescent low-dimensional tin-halide perovskites

215. Disphenoidal Zero-Dimensional Lead, Tin, and Germanium Halides: Highly Emissive Singlet and Triplet Self-Trapped Excitons and X-ray Scintillation
V. Morad, Y. Shynkarenko, S. Yakunin, A. Brumberg, R.D. Schaller, M.V. Kovalenko
J. Am. Chem. Soc., 2019, 141, 25, 9764-9768. external pageLink (open access) external pagePDF

Disphenoidal Zero-Dimensional Lead, Tin, and Germanium Halides: Highly Emissive Singlet and Triplet Self-Trapped Excitons and X-ray Scintillation
Disphenoidal Zero-Dimensional Lead, Tin, and Germanium Halides: Highly Emissive Singlet and Triplet Self-Trapped Excitons and X-ray Scintillation

214. Tuning Transport Properties in Thermoelectric Nanocomposites through Inorganic Ligands and Heterostructured Building Blocks
M. Ibáñez, A. Genç, R. Hasler, Y. Liu, O. Dobrozhan, O. Nazarenko, M. Mata, J. Arbiol, A. Cabot, and M.V. Kovalenko
ACS Nano., 2019, 13, 6, 6572-6580. external pageLink (open access) external pagePDF

Tuning Transport Properties in Thermoelectric Nanocomposites through Inorganic Ligands and Heterostructured Building Blocks

213. Underestimated Effect of a Polymer Matrix on the Light Emission of Single CsPbBr3 Nanocrystals
G. Raino, A. Landuyt, F. Krieg, C. Bernasconi, S.T. Ochsenbein, D.N. Dirin, M.I. Bodnarchuk, and M.V. Kovalenko
Nano Lett., 2019, 19, 6, 3648-3653. external pageLink (open access) external pagePDF

Underestimated Effect of a Polymer Matrix on the Light Emission of Single CsPbBr3 Nanocrystals

212. Engineering Color-Stable Blue Light-Emitting Diodes with Lead-Halide Perovskite Nanocrystals
S.T. Ochsenbein, F. Krieg, Y. Shynkarenko, G. Raino, and M.V. Kovalenko
ACS Appl. Mater. Interfaces, 2019, 11, 24, 21655-21660. external pageLink

Engineering Color-Stable Blue Light-Emitting Diodes with Lead-Halide Perovskite Nanocrystals

211. Unraveling the Radiative Pathways of Hot Carriers upon Intense Photoexcitation of Lead Halide Perovskite Nanocrystals
P. Papagiorgis, A. Manoli, S. Michael, C. Bernasconi, M.I. Bodnarchuk, M.V. Kovalenko, A. Othonos∥, and G. Itskos
ACS Nano, 2019, 13, 5799-5809. external pageLink (open access) external pagePDF

Unraveling the Radiative Pathways of Hot Carriers upon Intense Photoexcitation of Lead Halide Perovskite Nanocrystals

210. The ground exciton state of formamidinium lead bromide perovskite nanocrystals is a singlet dark state
P. Tamarat, M.I. Bodnarchuk, J.-B. Trebbia, R. Erni, M.V. Kovalenko, J. Even & B. Lounis
Nature Materials, 2019, 18, 717-724. external pageLink, external pageFull text

Highlights:

Nature News and Views: “external pageShedding light on dark excitons”,  by Andries Meijerink & Freddy T. Rabouw, May 13, 2019.

209. Ligand-Mediated Band Engineering in Bottom-Up Assembled SnTe Nanocomposites for Thermoelectric Energy Conversion
M. Ibáñez, R. Hasler, A. Genç, Y. Liu, B. Kuster, M. Schuster, O. Dobrozhan, D. Cadavid, J. Arbiol, A. Cabot, and M.V. Kovalenko
J. Am. Chem. Soc., 2019, 141, 8025-8029. external pageLink (open access) external pagePDF

Ligand-Mediated Band Engineering in Bottom-Up Assembled SnTe Nanocomposites for Thermoelectric Energy Conversion
Ligand-Mediated Band Engineering in Bottom-Up Assembled SnTe Nanocomposites for Thermoelectric Energy Conversion

208. Zeolite-Templated Carbon as the Cathode for a High Energy Density Dual-Ion Battery
R. Dubey, J. Nüssli, L. Piveteau, K.V. Kravchyk, M.D. Rossell, M. Campanini, R. Erni, M.V. Kovalenko, and N.P. Stadie
ACS Appl. Mater. Interfaces, 2019, 11, 17686-17696. external pageLink

Zeolite-Templated Carbon as the Cathode for a High Energy Density Dual-Ion Battery

207. Copper sulfide nanoparticles as high-performance cathode materials for Mg-ion batteries
K.V. Kravchyk, R. Widmer, R. Erni, R. Dubey, F. Krumeich, M. Kovalenko, and M. Bodnarchuk
Sci. Rep., 2019, 9, 7988. external pageLink (open access) external pagePDF

Copper sulfide nanoparticles as high-performance cathode materials for Mg-ion batteries

206. Transition metal trifluoroacetates (M = Fe, Co, Mn) as precursors for uniform colloidal metal difluoride and phosphide nanoparticles
C.P. Guntlin, K.V. Kravchyk, R. Erni, and M.V. Kovalenko
Sci. Rep., 2019, 9, 6613. external pageLink (open access) external pagePDF

Transition metal trifluoroacetates (M = Fe, Co, Mn) as precursors for uniform colloidal metal difluoride and phosphide nanoparticles

205. Nanoprinted Quantum Dot–Graphene Photodetectors
M.J. Grotevent, C.U. Hail, S. Yakunin, D.N. Dirin, K. Thodkar, G.B. Barin, P. Guyot‐Sionnest, M. Calame, D. Poulikakos, M.V. Kovalenko, I. Shorubalko
Adv. Optical Mater., 2019, 1900019. external pageLink

Nanoprinted Quantum Dot–Graphene Photodetectors

204. Exciton Gating and Triplet Deshelving in Single Dye Molecules Excited by Perovskite Nanocrystal FRET Antennae
F.J. Hofmann, M.I. Bodnarchuk, L. Protesescu, M.V. Kovalenko, J.M. Lupton, and J. Vogelsang
J. Phys. Chem. Lett., 2019, 10, 1055–1062. external pageLink

203. Guanidinium and mixed Cesium-Guanidinium Tin(II) Bromides: Effects of Quantum Confinement and Out-of-Plane Octahedral Tilting
O. Nazarenko, M.R. Kotyrba, S. Yakunin, M. Wörle, B.M. Benin, G. Rainò, F. Krumeich, M. Kepenekian, J. Even, C. Katan, and M.V. Kovalenko
Chem. Mater., 2019, 31, 2121–2129. external pageLink (open access) external pagePDF

Guanidinium and mixed Cesium-Guanidinium Tin(II) Bromides: Effects of Quantum Confinement and Out-of-Plane Octahedral Tilting

202. Overcoming the High-Voltage Limitations of Li-Ion Batteries using Titanium Nitride Current Collector
S. Wang, K.V. Kravchyk, A.N. Filippin, R. Widmer, A.N. Tiwari, S. Buecheler, M.I. Bodnarchuk, and M.V. Kovalenko
ACS Appl. Energy Mater., 2019, 2, 974–978. external pageLink (open access) external pagePDF

Overcoming the High-Voltage Limitations of Li-Ion Batteries using Titanium Nitride Current Collector

201. Coherent spin dynamics of electrons and holes in CsPbBr3 perovskite crystals
V.V. Belykh, D.R. Yakovlev, M.M. Glazov, P.S. Grigoryev, M. Hussain, J. Rautert, D.N. Dirin, M.V. Kovalenko and M. Bayer
Nature Communications, 201910, 673. external pageLink
(open access) external pagePDF

ArXiv version (9 Oct 2018): external pageLink, external pagePDF

200. Highly Stable, Near‐Unity Efficiency Atomically Flat Semiconductor Nanocrystals of CdSe/ZnS Hetero‐Nanoplatelets Enabled by ZnS‐Shell Hot‐Injection Growth
Y. Altintas, U. Quliyeva, K. Gungor, O. Erdem, Y. Kelestemur, E. Mutlugun, M.V. Kovalenko, H.V. Demir
Small, 2019, 1804854. external pageLink

199. Tunability and Scalability of Single-Atom Catalysts Based on Carbon Nitride
Z. Chen, S. Mitchell, F. Krumeich, R. Hauert, S. Yakunin, M.V. Kovalenko, and J. Pérez-Ramírez
ACS Sustainable Chem. Eng., 2019, 7, 5223–5230. external pageLink

198. Robust Hydrophobic and Hydrophilic Polymer Fibers Sensitized by Inorganic and Hybrid Lead Halide Perovskite Nanocrystal Emitters
P.G. Papagiorgis, A. Manoli, A. Alexiou, P. Karacosta, X. Karagiorgis, G. Papaparaskeva, M. Bodnarchuk, M.V. Kovalenko, T. Krasia and G. Itskos
Front. Chem., 2019, 7, 87. external pageLink

197. Impact of crystal structure and particle shape on the photoluminescence intensity of CdSe/CdS core/shell nanocrystals
L. Ludescher, D. Dirin, M.V. Kovalenko, M. Sztucki, P. Boesecke and R.T. Lechner
Front. Chem., 2019, 6, 672. external pageLink (open access)

196. Coherent Single Photon Emission from Colloidal Lead Halide Perovskite Quantum Dots
H. Utzat, W. Sun, A.E.K. Kaplan, F. Krieg, M. Ginterseder, B. Spokoyny, N.D. Klein, K.E. Shulenberger, C.F. Perkinson, M.V. Kovalenko, M.G. Bawendi
Science, 2019, 363, 1068-1072. external pageLink

ArXiv version (31 Dec 2018). external pageLink (open access) external pagePDF

195. Rationalizing and Controlling the Surface Structure and Electronic Passivation of Cesium Lead Halide Nanocrystals
M.I. Bodnarchuk, S.C. Boehme, S. Brinck, C. Bernasconi, Y. Shynkarenko, F. Krieg, R. Widmer, B. Aeschlimann, D. Günther, M.V. Kovalenko, and I. Infante
ACS Energy Lett., 2019, 4, 63–74. external pageLink (open access) external pagePDF

Rationalizing and Controlling the Surface Structure and Electronic Passivation of Cesium Lead Halide Nanocrystals

194. The effect of PbS nanocrystal additives on the charge transfer state recombination in a bulk heterojunction blend
M. Abdu-Aguye, L. Protesescu, D.N. Dirin, M.V. Kovalenko and M.A. Loi
Org. Photonics Photovolt., 2018, 6, 1–7. external pageLink (open access) external pagePDF

193. Electroluminescence Generation in PbS Quantum Dot Light-Emitting Field-Effect Transistors with Solid-State Gating
A.G. Shulga, S. Kahmann, D.N. Dirin, A. Graf∥, J. Zaumseil∥, M.V. Kovalenko, and Maria A. Loi
ACS Nano, 2018, 12, 12805–12813. external pageLink (open access) external pagePDF

192. Size-Dependent Fault-Driven Relaxation and Faceting in Zincblende CdSe Colloidal Quantum Dots
D. Moscheni, F. Bertolotti, L. Piveteau, L. Protesescu, D.N. Dirin, M.V. Kovalenko, A. Cervellino, J.S. Pedersen, N. Masciocchi, and A. Guagliardi
ACS Nano, 2018, 12, 12558–12570. external pageLink

191. Superweak Coordinating Anion as Superstrong Enhancer of Cyanine Organic Semiconductor Properties
D. Gesevičius, A. Neels, S. Yakunin, E. Hack, M.V. Kovalenko, F. Nüesch, J. Heier
ChemPhysChem, 2018, 19, 1–9. external pageLink

190. Enhancing quantum dot solar cells stability with a semiconducting single-walled carbon nanotubes interlayer below the top anode
J.M. Salazar-Rios, N. Sukharevska, M.J. Speirs, S. Jung, D. Dirin, R.M. Dragoman, S. Allard, M.V. Kovalenko, U. Scherf, and M.A. Loi
Advanced Materials Interfaces, 2018, 5, 1801155. external pageLink (open access) external pagePDF

189. Comparing Halide Ligands in PbS Colloidal Quantum Dots for Field-Effect Transistors and Solar Cells
D. Bederak, D.M. Balazs, N.V. Sukharevska, A.G. Shulga, M. Abdu-Aguye, D.N. Dirin, M.V. Kovalenko, and M.A. Loi
ACS Appl. Nano Mater., 2018, 1, 6882–6889. external pageLink (open access) external pagePDF

188. High-energy-density dual-ion battery for stationary storage of electricity using concentrated potassiumfluorosulfonylimide
K.V. Kravchyk, P. Bhauriyal, L. Piveteau, C.P. Guntlin, B. Pathak, M.V. Kovalenko
Nature Communications, 2018, 9, 4469. external pageLink
(open access) external pagePDF

189

187. Electron Mobility of 24 cm2 V−1 s−1 in PbSe Colloidal‐Quantum‐Dot Superlattices
D.M. Balazs, B.M. Matysiak, J. Momand, A.G. Shulga, M. Ibáñez, M.V. Kovalenko, B.J. Kooi, M.-A. Loi
Advanced Materials, 2018, 30, 1802265. external pageLink
(open access) external pagePDF

186. Long Exciton Dephasing Time and Coherent Phonon Coupling in CsPbBr2Cl Perovskite Nanocrystals
M.A. Becker, L. Scarpelli, G. Nedelcu, G. Rainò, F. Masia, P. Borri, T. Stöferle, M.V. Kovalenko, W. Langbein, R.F. Mahrt
Nano Lett., 201818, 7546–7551. external pageLink (open access) external pagePDF

185. Unraveling exciton–phonon coupling in individual FAPbI3 nanocrystals emitting near-infrared single photons
M. Fu, P. Tamarat, J.-B. Trebbia, M.I. Bodnarchuk, M.V. Kovalenko, J. Even and B. Lounis
Nature Communications, 2018, 9, 3318. external pageLink
(open access) external pagePDF

184. Growth of Au-Pd2Sn Nanorods via Galvanic Replacement and their Catalytic Performance on Hydrogenation and Sonogashira Coupling Reactions
R. Nafria, Z. Luo, M. Ibáñez, S. Martí-Sànchez, X. Yu, M. de la Mata, J. Llorca, J. Arbiol, M.V. Kovalenko, A. Grabulosa, G. Muller, and A. Cabot
Langmuir, 2018, 34, 10634–10643. external pageLink

183. Colloidal Bismuth Nanocrystals as a Model Anode Material for Rechargeable Mg-Ion Batteries: Atomistic and Mesoscale Insights
K.V. Kravchyk, L. Piveteau, R. Caputo, M. He, N.P. Stadie, M.I. Bodnarchuk, R.T. Lechner, and
M.V. Kovalenko

ACS Nano, 2018, 12, 8297–8307. external pageLink
(open access) external pagePDF

Colloidal Bismuth Nanocrystals as a Model Anode Material for Rechargeable Mg-Ion Batteries: Atomistic and Mesoscale Insights

182. Electrostatic-driven gelation of colloidal nanocrystals
T. Berestok, P. Guardia, M. Ibáñez, M. Meyns, M. Colombo, M.V. Kovalenko, F. Peiró, and A. Cabot
Langmuir, 2018, 34, 9167–9174. external pageLink

181. Highly Emissive Self-Trapped Excitons in Fully Inorganic Zero-Dimensional Tin Halides
B.M. Benin, D.N. Dirin, V. Morad, M. Wörle, S. Yakunin, G. Rainò,O. Nazarenko, M. Fischer, I. Infante, M.V. Kovalenko
Angewandte Chemie, 2018, 57, 1-6. external pageLink (open access) external pagePDF

Highly Emissive Self-Trapped Excitons in Fully Inorganic Zero-Dimensional Tin Halides

180. High Thermoelectric Performance in Crystallographically Textured n type Bi2Te3-xSex Produced from Asymmetric Colloidal Nanocrystals
Y. Liu, Y. Zhang, K.H. Lim, M. Ibáñez, S. Ortega, M. Li, J. David, S. Martí-Sànchez, K.M. Ng, J. Arbiol, M.V. Kovalenko, D. Cadavid, and A. Cabot
ACS Nano, 2018, 12, 7174–7184. external pageLink

179. Material Dimensionality Effects on Electron Transfer Rates Between CsPbBr3 and CdSe Nanoparticles
A. Brumberg, B.T. Diroll, G. Nedelcu, M.E. Sykes, Y. Liu, S.M. Harvey, M.R. Wasielewski, M.V. Kovalenko, and R. D. Schaller
Nano Lett., 2018, 18, 4771–4776. external pageLink

178. Resolving the Core and the Surface of CdSe Quantum Dots and Nanoplatelets Using Dynamic Nuclear Polarization Enhanced PASS–PIETA NMR Spectroscopy
L. Piveteau, T.-C. Ong, B.J. Walder, D.N. Dirin, D. Moscheni∥, B. Schneider, J. Bär, L. Protesescu, N. Masciocchi∥, A. Guagliardi∥, L.Emsley, C. Copéret, and M.V. Kovalenko
ACS Cent. Sci., 2018, 4,1113–1125. external pageLink
(open access) external pagePDF, (external pageACS Live slides)

Highlight:external pageCdSe Semiconductor Nanocrystals: The Surface and the Core” by Frédéric Blanc, ACS Cent. Sci., August, 2018.

Exploration of Near Infrared-Emissive Colloidal Multinary Lead Halide Perovskite Nanocrystals using an Automated Microfluidic Platform

177. Bulk Phosphorus-Doped Graphitic Carbon
E. Billeter, D. McGlamery, M. Aebli, L. Piveteau, M.V. Kovalenko and N.P. Stadie
Chem. Mater., 2018, 30, 4580–4589. external pageLink

176. Phonon Interaction and Phase Transition in Single Formamidinium Lead Bromide Quantum Dots
O. Pfingsten, J. Klein, L. Protesescu, M.I. Bodnarchuk, M.V. Kovalenko, and G. Bacher
Nano Lett., 2018, 18, 4440–4446. external pageLink

175. Ni–Al–Cr superalloy as high temperature cathode current collector for advanced thin film Li batteries
A.N. Filippin, T.-Y. Lin, M. Rawlence, T. Zünd, K.V. Kravchyk, J. Sastre-Pellicer, S.G. Haass, A. Wäckerlin, M.V. Kovalenko and S. Buecheler
RSC Advances, 2018, 8, 20304-20313. external pageLink (open access) external pagePDF

174. Pick a Color MARIA: Adaptive Sampling Enables the Rapid Identification of Complex Perovskite Nanocrystal Compositions with Defined Emission Characteristics
L. Bezinge, R.M. Maceiczyk, I. Lignos, M.V. Kovalenko, and A.J. deMello
ACS Appl. Mater. Interfaces
, 2018, 10, 18869–18878. external pageLink

173. SnP nanocrystals as anode material for Na-ion battery
J. Liu, S. Wang, K.V. Kravchyk, M. Ibáñez, F. Krumeich, R. Widmer, D. Nasiou, M. Meyns, J. Llorca, J. Arbiol, M. Kovalenko and A.Cabot
J. Mater. Chem. A
, 2018, 6, 10958-10966. external pageLink

172. Exploration of Near Infrared-Emissive Colloidal Multinary Lead Halide Perovskite Nanocrystals using an Automated Microfluidic Platform
I. Lignos, V. Morad, Y. Shynkarenko, C. Bernasconi, R.M. Maceiczyk, L. Protesescu, F. Bertolotti, S. Kumar, S.T. Ochsenbein, N. Masciocchi, A. Guagliardi, C.-J. Shih, M.I. Bodnarchuk, A.J. deMello, and M.V. Kovalenko
ACS Nano
, 2018, 12, 5504–5517. external pageLink (open access) external pagePDF, (external pageACS Live slides)

Exploration of Near Infrared-Emissive Colloidal Multinary Lead Halide Perovskite Nanocrystals using an Automated Microfluidic Platform

171. Full-color tuning in binary polymer:perovskite nanocrystals organic-inorganic hybrid blends
A. Perulli, A. Balena, M. Fernandez, G. Nedelcu, A. Cretí, M.V. Kovalenko, M. Lomascolo, and M. Anni
Appl. Phys. Lett.
, 2018, 112, 171904. external pageLink

170. Superfluorescence from Lead Halide Perovskite Quantum Dot Superlattices
G. Rainò, M.A. Becker, M.I. Bodnarchuk, R.F. Mahrt, M.V. Kovalenko, Thilo Stöferle
Nature
, 2018, 563, 671–675. external pageLink (open access) external pagePDF

170

ArXiv version (5 Apr 2018): external pageLink, external pagePDF

Blog article "Superfluorescence from Nanocrystal Superlattices: A Serendipitous Discovery": external pageLink

Article "Superfluorescence from Nanocrystal Superlattices" in Chimia (2019, 73, No. 1/2): external pageLink

Highlights: ETH News, 2018, November 7 (“Quantum light from superlattices” by Joachim Schnabl); Empa News, 2018, November 7 (“external pageA burst of ”synchronous” light” by Cornelia Zogg); Laser Focus World, 2018, December ("external pagePerovskite quantum-dot superlattices produce superfluorescent quantum light" by Gail Overton).

169. Monodisperse CoSn2 and FeSn2 nanocrystals as high-performance anode materials for lithium-ion batteries
S. Wang, M. He, M. Walter, F. Krumeich, K.V. Kravchyk and M.V. Kovalenko
Nanoscale
, 2018, 10, 6827-6831. external pageLink (open access) external pagePDF

Monodisperse CoSn2 and FeSn2 nanocrystals as high-performance anode materials for lithium-ion batteries

168. Crystallographically Textured Nanomaterials Produced from the Liquid Phase Sintering of BixSb2-xTe3 Nanocrystal Building Blocks
Y. Liu, Y. Zhang, S. Ortega, M. Ibáñez, K.H. Lim, A.G. Carbonell, S. Martí-Sànchez, K.M. Ng, J. Arbiol, M.V. Kovalenko, D. Cadavid, and A. Cabot
Nano Lett.
, 2018, 18, 2557–2563. external pageLink

167. NaFeF3 Nanoplates as Low-Cost Sodium and Lithium Cathode Materials for Stationary Energy Storage
K.V. Kravchyk, T. Zünd, M. Wörle, M.V. Kovalenko, and M.I. Bodnarchuk
Chem. Mater., 2018, 30, 1825–1829. external pageLink (open access) external pagePDF

NaFeF3 Nanoplates as Low-Cost Sodium and Lithium Cathode Materials for Stationary Energy Storage

166. Polypyrenes as High-Performance Cathode Materials for Aluminum Batteries
M. Walter, K.V. Kravchyk, C. Böfer, R. Widmer, and M.V. Kovalenko
Advanced Materials
, 2018, 1705644. external pageLink (open access) external pagePDF

Polypyrenes as High-Performance Cathode Materials for Aluminum Batteries

Highlights: ETH News, 2018, April 30 (“New materials for sustainable, low-cost batteries” by Fabio Bergamin); Empa News, 2018, April 30 (“external pageOne step further towards cheap aluminium batteries” by Fabio Bergamin); Südostschweiz, 2018, September 11 ("external pageNachhaltige Billig-Batterie rückt näher").

165. Low-Cost Synthesis of Highly Luminescent Colloidal Lead Halide Perovskite Nanocrystals by Wet Ball Milling
L. Protesescu, S. Yakunin, O. Nazarenko, D.N. Dirin, and M.V. Kovalenko
ACS Appl. Nano Mater.
, 2018, 1, 1300–1308. external pageLink (open access) external pagePDF

Low-Cost Synthesis of Highly Luminescent Colloidal Lead Halide Perovskite Nanocrystals by Wet Ball Milling

164. Guanidinium-formamidinium lead iodide: a layered perovskite-related compound with red luminescence at room temperature
O. Nazarenko, M.R. Kotyrba, S. Yakunin, M. Aebli, G. Raino, B.M. Benin, M. Wörle, and M.V. Kovalenko
J. Am. Chem. Soc.
, 2018, 140, 3850–3853. external pageLink (open access) external pagePDF

Guanidinium-formamidinium lead iodide: a layered perovskite-related compound with red luminescence at room temperature

Highlights:

Science perspectives and commentary: “external pageLayers for red luminescence”,  by Phil Szuromi, April 5, 2018;

163. Temperature Dependence of the Amplified Spontaneous Emission from CsPbBr3 Nanocrystal Thin Films
A. Balena, A. Perulli, M. Fernandez, M.L. De Giorgi, G. Nedelcu, M.V. Kovalenko, and M. Anni
J. Phys. Chem. C, 2018, 122, 5813–5819. external pageLink

162. Genesis, challenges and opportunities for colloidal lead halide perovskite nanocrystals
Q.A. Akkerman, G. Rainò, M.V. Kovalenko, L. Manna
Nature Materials
, 2018, 17, 394–405. external pageLink (open access) external pagePDF

Genesis, challenges and opportunities for colloidal lead halide perovskite nanocrystals

161. Colloidal CsPbX3 (X=Cl, Br, I) Nanocrystals 2.0: Zwitterionic Capping Ligands for Improved Durability and Stability
F. Krieg, S. Ochsenbein, S. Yakunin, S. Brinck, P. Aellen, A. Süess, B. Clerc, D. Guggisberg, O. Nazarenko, Y. Shynkarenko, S. Kumar, C.-J. Shih, I. Infante, and M.V. Kovalenko
ACS Energy Lett.
, 2018, 3, 641–646. external pageLink, (open access) external pagePDF, (external pageACS Live slides)

Colloidal CsPbX3 (X=Cl, Br, I) Nanocrystals 2.0: Zwitterionic Capping Ligands for Improved Durability and Stability

160. Ligand-induced symmetry breaking, size and morphology in colloidal lead sulfide QDs: from classic to thiourea precursors
F. Bertolotti, A.H. Proppe, D,N. Dirin, M. Liu, O. Voznyy, A. Cervellino, S.J.L. Billinge, M.V. Kovalenko, E.H. Sargent, N. Masciocchi, A. Guagliardi
Chem. Sq.
, 2018, 2, 1. external pageLink (open access) external pagePDF

159. Oxidized Co-Sn Nanoparticles as Long-Lasting Anode Materials for Lithium-Ion Batteries
M. Walter, S. Doswald, F. Krumeich, M. He, R. Widmer, N. Stadie and M. Kovalenko
Nanoscale
, 2018, 10, 3777-3783. external pageLink (open access) external pagePDF

Oxidized Co-Sn Nanoparticles as Long-Lasting Anode Materials for Lithium-Ion Batteries

158. Popcorn-shaped FexO (Wüstite) Nanoparticles from a Single-Source Precursor: Colloidal Synthesis and Magnetic Properties
C.P. Guntlin, S.T. Ochsenbein, M. Wörle, R. Erni, K.V. Kravchyk, and M.V. Kovalenko
Chem. Mater.
, 2018, 30, 1249–1256. external pageLink (open access) external pagePDF

Popcorn-shaped FexO (Wüstite) Nanoparticles from a Single-Source Precursor: Colloidal Synthesis and Magnetic Properties

157. Colloidal quantum dot inks for single-step-fabricated field-effect transistors: the importance of post-deposition ligand removal
D.M. Balazs, N. Rizkia, H. Fang, D.N. Dirin, J. Momand, B.J. Kooi, M.V. Kovalenko, and M.A. Loi
ACS Appl. Mater. Interfaces
, 2018, 10, 5626–5632. external pageLink (open access) external pagePDF

156. Aluminum Chloride-Graphite Batteries with Flexible Current Collectors Prepared from Earth-Abundant Elements
S. Wang, K.V. Kravchyk, A.N. Filippin, U. Müller, A.N. Tiwari, S. Buecheler, M.I. Bodnarchuk, and M.V. Kovalenko
Advanced Science, 2018, 1700712. external pageLink (open access) external pagePDF

Aluminum Chloride-Graphite Batteries with Flexible Current Collectors Prepared from Earth-Abundant Elements

Highlights: ETH News, 2018, April 30 (“New materials for sustainable, low-cost batteries” by Fabio Bergamin); Empa News, 2018, April 30 (“external pageOne step further towards cheap aluminium batteries” by Fabio Bergamin); Südostschweiz, 2018, September 11 ("external pageNachhaltige Billig-Batterie rückt näher").

155. Unveiling the Shape Evolution and Halide-Ion-Segregation in Blue Emitting Formamidinium Lead Halide Perovskite Nanocrystals using an Automated Microfluidic Platform
I. Lignos, L. Protesescu, D.B. Emiroglu, R.M. Maceiczyk, S. Schneider, M.V. Kovalenko, and A.J. deMello
Nano Letters, 2018, 18, 1246–1252. external pageLink (open access) external pagePDF

Unveiling the Shape Evolution and Halide-Ion-Segregation in Blue Emitting Formamidinium Lead Halide Perovskite Nanocrystals using an Automated Microfluidic Platform

154. Efficient Optical Amplification in the Nanosecond Regime from Formamidinium Lead Iodide Nanocrystals
P. Papagiorgis, A. Manoli, L. Protesescu, C. Achilleos, M. Violaris, K. Nicolaides, T. Trypiniotis, M.I. Bodnarchuk, M.V. Kovalenko, A. Othonos, and G. Itskos
ACS Photonics, 2018, 5, 907–917. external pageLink

153. Bright triplet excitons in caesium lead halide perovskites
M.A. Becker, R. Vaxenburg, G. Nedelcu, P.C. Sercel, A. Shabaev, M.J. Mehl, J.G. Michopoulos, S.G. Lambrakos, N. Bernstein, J.L. Lyons, T. Stöferle, R.F. Mahrt, M.V. Kovalenko, D.J. Norris, G. Rainò, A.L. Efros
Nature
, 2018, 553, 189-193. external pageLink

Highlights:

Nature News and Views: “external pageRule-Breaking Perovskites”,  by Michele Saba, January 10, 2018; ETH News, “Extremely bright and fast light emission” by Fabio Bergamin, January 11, 2018.

152. Aggregation-induced emission in lamellar solids of colloidal perovskite quantum wells
J. Jagielski, S. Kumar, M. Wang, D. Scullion, R. Lawrence, Y.-T. Li, S. Yakunin, T. Tian, M.V. Kovalenko, Y.-C. Chiu, E.J.G. Santos, S. Lin and C.-J. Shi
Science Advances
, 2017, 3, eaaq0208. external pageLink (open access) external pagePDF

151. Spontaneous emission enhancement of colloidal perovskite nanocrystals by a photonic crystal cavity
Z. Yang, M. Pelton, M.I. Bodnarchuk, M.V. Kovalenko, and E. Waks
Appl. Phys. Lett., 2017, 111, 221104. external pageLink

150. Properties and potential optoelectronic applications of lead halide perovskite nanocrystals
M.V. Kovalenko, L. Protesescu, M.I. Bodnarchuk
Science
, 2017, 358, 745-750. external pageLink, external pageFull text, external pageReprint

Properties and potential optoelectronic applications of lead halide perovskite nanocrystals

149. Surface-Engineered Cationic Nanocrystals Stable in Biological Buffers and High Ionic Strength Solutions
R.M. Dragoman, M.Grogg, M.I. Bodnarchuk, P. Tiefenboeck, D. Hilvert, D.N. Dirin, and M.V. Kovalenko
Chem. Mater.
, 2017, 29, 9416–9428. external pageLink (open access) external pagePDF

Surface-Engineered Cationic Nanocrystals Stable in Biological Buffers and High Ionic Strength Solutions

148. Stoichiometric control of the density of states in PbS colloidal quantum dot solids
D.M. Balazs, K.I. Bijlsma, H. Fang, D.N. Dirin, M. Döbeli, M.V. Kovalenko and M.A. Loi
Science Advances
2017, 3, eaao1558. external pageLink (open access) external pagePDF

147. Polarized emission in II-VI and perovskite colloidal quantum dots
M. Isarov, L.Z Tan, J. Tilchin, F. Rabouw, M. Bodnarchuk, R. Dijk-Moes, R. Carmi, Y. Barak, A. Kostadinov, I. Meir, D. Vanmaekelbergh, M. Kovalenko, A. Rappe and E. Lifshitz
J. Phys. B: At
., Mol. Opt. Phys., 2017, 50, 214001. external pageLink (open access) external pagePDF

146. Luminescent and Photoconductive Layered Lead Halide Perovskite Compounds Comprising Mixtures of Cesium and Guanidinium Cations
O. Nazarenko, M.R. Kotyrba, M. Wörle, E. Cuervo-Reyes, S. Yakunin, and M.V. Kovalenko
Inorg. Chem
., 2017, 56, 11552–11564. external pageLink (external pageACS Live slides) (open access) external pagePDF

Luminescent and Photoconductive Layered Lead Halide Perovskite Compounds Comprising Mixtures of Cesium and Guanidinium Cations

145. Microfluidic Reactors Provide Preparative and Mechanistic Insights into the Synthesis of Formamidinium Lead Halide Perovskite Nanocrystals
R.M. Maceiczyk, K. Dümbgen, I. Lignos, L. Protesescu, M.V. Kovalenko, and A.J. deMelloo
Chem. Mater.
2017, 29, 8433–8439. external pageLink  (open access) external pagePDF

Microfluidic Reactors Provide Preparative and Mechanistic Insights into the Synthesis of Formamidinium Lead Halide Perovskite Nanocrystals

144. Non-dissipative internal optical filtering with solution-grown perovskite single crystals for full-colour imaging
S. Yakunin, Y. Shynkarenko, D.N. Dirin, I. Cherniukh and M.V. Kovalenko
NPG Asia Mater.2017, 9, e431. external pageLink (full-text access) external pagePDF

Non-dissipative internal optical filtering with solution-grown perovskite single crystals for full-colour imaging

Highlights:

Empa press-release, 2017, November 16 ("external pageThe stacked color sensor").

143. Tuning P-type Transport in Bottom-Up-Engineered Nanocrystalline Pb Chalcogenides Using Alkali Metal Chalcogenides as Capping Ligands
M. Ibáñez, R. Hasler, Y. Liu, O. Dobrozhan, O. Nazarenko, D. Cadavid, A. Cabot, and M.V. Kovalenko
Chem. Mater.2017, 29, 7093–7097. external pageLink (open access) external pagePDF

Tuning P-type Transport in Bottom-Up-Engineered Nanocrystalline Pb Chalcogenides Using Alkali Metal Chalcogenides as Capping Ligands

142. Passivation of edge states in etched InAs sidewalls
C. Mittag, M. Karalic, S. Mueller, T. Tschirky, W. Wegscheider, O. Nazarenko, M.V. Kovalenko, T. Ihn, and K. Ensslin
Appl. Phys. Lett., 2017, 111, 082101. external pageLink

141. Lead Halide Perovskite Nanocrystals: From Discovery to Self-assembly and Applications
M.V. Kovalenko, M. Bodnarchuk
CHIMIA, 2017, 71, 461-470. external pageLink (open access)Download (PDF, 916 KB)

140. Lead Halide Perovskite Nanocrystals in the Research Spotlight: Stability and Defect-Tolerance
H. Huang, M. Bodnarchuk, S.V. Kershaw, M.V. Kovalenko, and A.L. Rogach
ACS Energy Lett., 2017, 2, 2071–2083. external pageLink (open access) external pagePDF

139. Kish Graphite Flakes as a Cathode Material for an Aluminum Chloride – Graphite Battery
S. Wang, K.V. Kravchyk, F. Krumeich, and M.V. Kovalenko
ACS Appl. Mater. Interfaces
2017, 9, 28478–28485. external pageLink (open access) external pagePDF

Kish Graphite Flakes as a Cathode Material for an Aluminum Chloride – Graphite Battery

138. An All-Solution-Based Hybrid CMOS-Like Quantum Dot/Carbon Nanotube Inverter
A.G. Shulga, V. Derenskyi, J.M. Salazar-Rios, D.N. Dirin, M. Fritsch, M.V. Kovalenko, U. Scherf, and M.A. Loi
Adv. Mater. 2017, 1701764. external pageLink (open access) external pagePDF

137. Design and Synthesis of Heteroleptic Iridium(III) Phosphors for Efficient Organic Light-Emitting Devices
S. Kumar, K.R. Surati, R. Lawrence, A.C. Vamja, S. Yakunin, M.V. Kovalenko, E.J.G. Santos, and C.-J. Shih
Inorg. Chem.
, 2017, 56, 15304–15313. external pageLink

136. Rashba effect in a single colloidal CsPbBr3 perovskite nanocrystal detected by magneto-optical measurements
M. Isarov, L.Z. Tan, M.I. Bodnarchuk, M.V. Kovalenko, A.M. Rappe, and E. Lifshitz
Nano Lett.
, 2017, 17, 5020–5026. external pageLink

135. Exciton Recombination in Formamidinium Lead Triiodide: Nanocrystals versus Thin Films
H.-H. Fang, L. Protesescu, D.M. Balazs, S. Adjokatse, M.V. Kovalenko, and M.A. Loi
Small
, 2017, 1700673. external pageLink (open access) external pagePDF

134. Chromium nitride as a stable cathode current collector for all-solid-state thin film Li-ion batteries
A.N. Filippin, M. Rawlence, A. Wäckerlin, T. Feurer, T. Zünd, K.V. Kravchyk, M.V. Kovalenko, Y.E. Romanyuk, A.N. Tiwari and S. Buecheler
RSC Adv.
, 2017, 7, 26960-26967. external pageLink (open access) external pagePDF

133. Long-Lived Hot Carriers in Formamidinium Lead Iodide Nanocrystals
P. Papagiorgis, L. Protesescu, M.V. Kovalenko, A. Othonos, and G. Itskos
J. Phys. Chem. C
, 2017, 121, 12434–12440. external pageLink

132. Bottom-up engineering of thermoelectric nanomaterials and devices from solution-processed nanoparticle building blocks
S. Ortega, M. Ibáñez, Y. Liu, Y. Zhang, M.V. Kovalenko, D. Cadavid and A. Cabot
Chem. Soc. Rev.
, 2017, 46, 3510-3528. external pageLink

Bottom-up engineering of thermoelectric nanomaterials and devices from solution-processed nanoparticle building blocks

131. Efficient Aluminum Chloride–Natural Graphite Battery
K.V. Kravchyk, S. Wang, L. Piveteau, and M.V. Kovalenko
Chem. Mater.
, 2017, 29, 4484–4492. external pageLink(open access) external pagePDF

Single crystals of caesium formamidinium lead halide perovskites: solution growth and gamma dosimetry

130. Tuning Branching in Ceria Nanocrystals
T. Berestok, P. Guardia, J. Blanco, R. Nafria, P. Torruella, L. Lopez-Conesa, S. Estrade, M. Ibáñez, J. De Roo, Z. Luo, D. Cadavid, J.C. Martins, M.V. Kovalenko, F. Peiró, and A. Cabot
Chem. Mater.
, 2017, 29, 4418–4424. external pageLink

129. Strongly Red-Shifted Photoluminescence Band Induced by Molecular Twisting in Cyanine (Cy3) Dye Films
S.B. Anantharaman, S. Yakunin, C. Peng, M.V. Vismara, C.F. Graeff, F.A. Nüesch, S. Jenatsch, R. Hany, M.V. Kovalenko, and J. Heier
J. Phys. Chem. C, 2017, 121, 9587–9593. external pageLink (open access) external pagePDF

128. Single crystals of caesium formamidinium lead halide perovskites: solution growth and gamma dosimetry
O. Nazarenko, S. Yakunin, V. Morad, I. Cherniukh and M.V. Kovalenko
NPG Asia Materials
, 2017, 9, e373. external pageLink (open access) external pagePDF

Single crystals of caesium formamidinium lead halide perovskites: solution growth and gamma dosimetry

127. Coherent Nanotwins and Dynamic Disorder in Cesium Lead Halide Perovskite Nanocrystals
F. Bertolotti, L. Protesescu, M.V. Kovalenko, S. Yakunin, A. Cervellino, S.J.L. Billinge, M.W. Terban, J.S. Pedersen, N. Masciocchi, and A. Guagliardi
ACS Nano, 2017, 11, 3819–3831. external pageLink (open access) external pagePDF

Coherent Nanotwins and Dynamic Disorder in Cesium Lead Halide Perovskite Nanocrystals

126. High-Temperature Photoluminescence of CsPbX3 (X = Cl, Br, I) Nanocrystals
B.T. Diroll, G. Nedelcu, M.V. Kovalenko, and R.D. Schaller
Adv. Funct. Mater.
, 2017, 1606750. external pageLink

125. Nanocrystalline FeF3 and MF2 (M=Fe, Co, Mn) from Metal Tri-fluoroacetates and their Li(Na)-ion Storage Properties
C. Guntlin, T. Zünd, K.V. Kravchyk, M. Wörle, M.I. Bodnarchuk and M. Kovalenko
J. Mater. Chem. A
, 2017, 5, 7383–7393. external pageLink

Nanocrystalline FeF3 and MF2 (M=Fe, Co, Mn) from Metal Tri-fluoroacetates and their Li(Na)-ion Storage Properties

124. Direct Synthesis of Bulk Boron-Doped Graphitic Carbon
N.P. Stadie, E. Billeter, L. Piveteau, K.V. Kravchyk, M. Doebeli, and M.V. Kovalenko
Chem. Mater., 2017, 29, 3211–3218. external pageLink (open access) external pagePDF

Direct Synthesis of Bulk Boron-Doped Graphitic Carbon

123. Increased efficiency in pn-junction PbS QD solar cells via NaHS treatment of the p-type layer
M.J. Speirs, D.M. Balazs, D.N. Dirin, M.V. Kovalenko, and M. Loi
Applied Physics Letters
, 2017, 110, 103904. external pageLink

122. Dismantling the “Red Wall” of Colloidal Perovskites: Highly Luminescent Formamidinium and Formamidinium-Cesium Lead Iodide Nanocrystals
L. Protesescu, S. Yakunin, S. Kumar, J. Bär, F. Bertolotti, N. Masciocchi, A. Guagliardi, M. Grotevent, I. Shorubalko, M.I. Bodnarchuk, C.-J. Shih, and M.V. Kovalenko
ACS Nano
, 2017, 11, 3119–3134. external pageLink (open access) external pagePDF

Dismantling the “Red Wall” of Colloidal Perovskites: Highly Luminescent Formamidinium and Formamidinium-Cesium Lead Iodide Nanocrystals

121. Zeolite-Templated Carbon as an Ordered Microporous Electrode for Aluminum Batteries
N.P. Stadie, S. Wang, K.V. Kravchyk, and M.V. Kovalenko
ACS Nano, 2017, 11, 1911–1919. external pageLink (open access) external pagePDF

Zeolite-Templated Carbon as an Ordered Microporous Electrode for Aluminum Batteries

120. Solution-Based Synthesis and Processing of Sn- and Bi-Doped Cu3SbSe4 Nanocrystals, Nanomaterials and Ring-Shaped Thermoelectric Generators
Y. Liu, G. García, S. Ortega, D. Cadavid, P. Palacios, J. Lu, M. Ibáñez, L. Xi, J. De Roo, A.M. López, S. Martí-Sánchez, I. Cabezas, M. de la Mata, Z. Luo, C. Dun, O. Dobrozhan, D.L. Carroll, W. Zhang, J. Martins, M.V. Kovalenko, J. Arbiol, G. Noriega, J. Song, P. Wahnón, and A. Cabot
J. Mater. Chem. A,
2017, 5, 2592–2602. external pageLink

119. Localized holes and delocalized electrons in photoexcited inorganic perovskites: Watching each atomic actor by picosecond X-ray absorption spectroscopy
F.G. Santomauro, J. Grilj, L. Mewes, G. Nedelcu, S. Yakunin, T. Rossi, G. Capano, A. Al Haddad, J. Budarz, D. Kinschel, D. S. Ferreira, G. Rossi, M.G. Tovar, D. Grolimund, V. Samson, M. Nachtegaal, G. Smolentsev, M.V. Kovalenko, M. Chergui
Struct. Dyn.
, 2017, 4, 044002. external pageLink (open access) external pagePDF

Highlight: Physics today, 2017, January 23 ("external pageWatching perovskite photoexcitations, atom by atom").

118. Solution-grown CsPbBr3 perovskite single crystals for photon detection
D.N Dirin, I. Cherniukh, S. Yakunin, Y. Shynkarenko, and M.V. Kovalenko
Chem. Mater.,
2016, 28, 8470–8474. external pageLink (open access) external pagePDF

Solution-grown CsPbBr3 perovskite single crystals for photon detection

117. Monodisperse Formamidinium Lead Bromide Nanocrystals with Bright and Stable Green Photoluminescence
L. Protesescu, S. Yakunin, M.I. Bodnarchuk, F. Bertolotti, N. Masciocchi, A. Guagliardi, and M.V. Kovalenko
J. Am. Chem. Soc., 2016, 138, 14202–14205. external pageLink (open access) external pagePDF

Monodisperse Formamidinium Lead Bromide Nanocrystals with Bright and Stable Green Photoluminescence

116. Efficient Blue Electroluminescence Using Quantum-Confined Two-Dimensional Perovskites
S. Kumar, J. Jagielski, S. Yakunin, P. Rice, Yu-C. Chiu, M. Wang, G. Nedelcu, Y. Kim, S. Lin, E.J.G. Santos, M.V. Kovalenko, and Ch.-J. Shih
ACS Nano
, 2016, 10, 9720–9729. external pageLink

115. Magnetic Manipulation of Spontaneous Emission from Inorganic CsPbBr3 Perovskites Nanocrystals
M.V. Pavliuk, D.L.A. Fernandes, A.M. El-Zohry, M. Abdellah, G. Nedelcu, M.V. Kovalenko, and J. Sá
Adv. Optical Mater
., 2016, 4, 2004-2008. external pageLink

114. Synthesis and Thermoelectric Properties of Noble Metal Ternary Chalcogenide Systems of Ag-Au-Se in the forms of Alloyed Nanoparticles and Colloidal Nanoheterostructures
M. Dalmases, M. Ibáñez, P. Torruella, V. Fernàndez-Altable, L. Lopez-Conesa, D. Cadavid, L. Piveteau, M. Nachtegaal, J. Llorca, M. Ruiz-González, S. Estrade, F. Peiró, M. V. Kovalenko, A. Cabot, and A. Figuerola
Chem. Mater., 2016, 28, 7017–7028. external pageLink

113. Thermoelectric properties of semiconductor-metal composites produced by particle blending
Y. Liu, D. Cadavid, M. Ibáñez, S. Ortega, S. Martí-Sánchez, O. Dobrozhan, M.V. Kovalenko, J. Arbiol and A. Cabot
APL Mater.
, 2016, 4, 104813. external pageLink (open access) external pagePDF

112. Harnessing Defect-Tolerance at the Nanoscale: Highly Luminescent Lead Halide Perovskite Nanocrystals in Mesoporous Silica Matrices
D.N. Dirin, L. Protesescu, D. Trummer, I.V. Kochetygov, S. Yakunin, F. Krumeich, N.P. Stadie and M.V. Kovalenko
Nano Lett.,
2016, 16, 5866–5874. external pageLink (open access) external pagePDF

Harnessing Defect-Tolerance at the Nanoscale: Highly Luminescent Lead Halide Perovskite Nanocrystals in Mesoporous Silica Matrices

111. Temperature dependent behaviour of lead sulfide quantum dot solar cells and films
M. Speirs, D. Dirin, M. Abdu-Aguye, D.M. Balazs, M. Kovalenko and M.A. Loi
Energy Environ. Sci.,
2016, 9, 2916-2924. external pageLink (open access) external pagePDF

110. Polymer-Enhanced Stability of Inorganic Perovskite Nanocrystals and Their Application in Color Conversion LEDs
M. Meyns, M. Perálvarez, A. Heuer-Jungemann, W. Hertog, M. Ibáñez, R. Nafria, A. Genç, J. Arbiol, M.V. Kovalenko, J. Carreras, A. Cabot, and A.G. Kanaras
ACS Appl. Mater. Interfaces,
2016, 8, 19579–19586. external pageLink

109. Detection of gamma photons using solution-grown single crystals of hybrid lead halide perovskites
S. Yakunin, D.N. Dirin, Y. Shynkarenko, V. Morad, I. Cherniukh, O. Nazarenko, D. Kreil, T. Nauser and M.V. Kovalenko
Nature Photonics,
2016, 10, 585–589. external pageLink

Detection of gamma photons using solution-grown single crystals of hybrid lead halide perovskites

108. Crystal symmetry breaking and vacancies in colloidal lead chalcogenide quantum dots
F. Bertolotti, D.N. Dirin, M. Ibáñez, F. Krumeich, A. Cervellino, R. Frison, O. Voznyy, E.H. Sargent, M.V. Kovalenko, A. Guagliardi and N. Masciocchi
Nature Materials,
2016, 15, 987–994. external pageLink

107. Hydrogen-Like Wannier-Mott Excitons in Single Crystal of Methylammonium Lead Bromide Perovskite
J. Tilchin, D.N. Dirin, G.I. Maikov, A. Sashchiuk, M.V. Kovalenko, and E. Lifshitz
ACS Nano,
2016, 10, 6363-6371. external pageLink

106. Energy Transfer Between Inorganic Perovskite Nanocrystals
C. Weerd, L. Navascues, H. Zhang, W. Buma, G. Nedelcu, M.V. Kovalenko, and T. Gregorkiewicz
J. Phys. Chem. C,
2016, 120, 13310-13315. external pageLink (open access) external pagePDF

105. Probing the molecular character of periodic mesoporous organosilicates via photoluminescence of Lewis acid–base adducts
I. Thiel, A. Fedorov, R. Verel, S. Yakunin, M.V. Kovalenko and C. Copéret
Phys. Chem. Chem. Phys.,
2016, 18, 13746-13749. external pageLink (open access) external pagePDF

104. Colloidal AgSbSe2 nanocrystals: surface analysis, electronic doping and processing into thermoelectric nanomaterials
Y. Liu, D. Cadavid, M. Ibáñez, J. De Roo, S. Ortega, O. Dobrozhan, M. Kovalenko and A. Cabot
J. Mater. Chem. C
, 2016, 4, 4756-4762. external pageLink (open access) external pagePDF

103. Inexpensive Colloidal SnSb Nanoalloys as Efficient Anode Materials for Lithium- and Sodium-Ion Batteries
M. Walter, S. Doswald and M. Kovalenko
J. Mater. Chem. A, 2016, 4, 7053-7059. external pageLink (open access) external pagePDF

102. Free carrier generation and recombination in PbS quantum dot solar cells
J. Kurpiers, D.M. Balazs, A. Paulke, S. Albrecht, I. Lange, L. Protesescu, M.V. Kovalenko, M.A. Loi and D. Neher
Appl. Phys. Lett., 2016, 108, 103102. external pageLink

101. High-performance thermoelectric nanocomposites from nanocrystal building blocks
M. Ibáñez, Z. Luo, A. Genç, L. Piveteau, S. Ortega, D. Cadavid, O. Dobrozhan, Y. Liu, M. Nachtegaal, M. Zebarjadi, J. Arbiol, M.V. Kovalenko & A. Cabot
Nature Communications, 2016, 7, 10766. external pageLink (open access) external pagePDF

High-performance thermoelectric nanocomposites from nanocrystal building blocks

100. From molecular germanates to microporous Ge@C via twin polymerization
P. Kitschke, M. Walter, T. Rueffer, H. Lang, M. Kovalenko and M. Mehring
Dalton Trans., 2016, 45, 5741-5751. external pageLink (open access) external pagePDF

99. Synthesis of Cesium Lead Halide Perovskite Nanocrystals in a Droplet-Based Microfluidic Platform: Fast Parametric Space Mapping
I. Lignos, S. Stavrakis, G. Nedelcu, L. Protesescu, A.J. deMello, and M.V. Kovalenko
Nano Lett. 2016, 16, 1869–1877. external pageLink (open access) external pagePDF

Synthesis of Cesium Lead Halide Perovskite Nanocrystals in a Droplet-Based Microfluidic Platform: Fast Parametric Space Mapping

98. Double Gate PbS Quantum Dot Field-Effect Transistors for Tuneable Electrical Characteristics
A.G. Shulga, L. Piveteau, S.Z. Bisri, M.V. Kovalenko and M.A. Loi
Adv. Electron. Mater., 2016, 1500467. external pageLink

97. Porous Ge@C materials via Twin polymerization of germanium(II) salicyl alcoholates for Li-ion batteries
P. Kitschke, M. Walter, T. Rueffer, A. Seifert, F. Speck, T. Seyller, S. Spange, H. Lang, A.A. Auer, M.V. Kovalenko and M. Mehring
J. Mater. Chem. A, 2016, 4, 2705-2719. external pageLink (open access) external pagePDF

96. Highly Dynamic Ligand Binding and Light Absorption Coefficient of Cesium Lead Bromide Perovskite Nanocrystals
J. De Roo, M. Ibáñez, P. Geiregat, G. Nedelcu, W. Walravens, J. Maes, J.C. Martins, I. Van Driessche, M.V. Kovalenko, and Z. Hens
ACS Nano, 2016, 10, 2071–2081. external pageLink

Highly Dynamic Ligand Binding and Light Absorption Coefficient of Cesium Lead Bromide Perovskite Nanocrystals

95. Scalable Heating-Up Synthesis of Monodisperse Cu2ZnSnS4 Nanocrystals
A. Shavel, M. Ibáñez, Z. Luo, J. De Roo, À. Carreté, M. Dimitrievska, A. Genç, M. Meyns, A. Pérez-Rodríguez, M.V. Kovalenko, J. Arbiol, and A. Cabot
Chem. Mater., 2016, 28, 720–726. external pageLink

94. Single Cesium Lead Halide Perovskite Nanocrystals at Low Temperature: Fast Single-Photon Emission, Reduced Blinking, and Exciton Fine Structure
G. Raino, G. Nedelcu, L. Protesescu, M.I. Bodnarchuk, M.V. Kovalenko, R.F. Mahrt, and T. Stöferle
ACS Nano, 2016, 10, 2485–2490. external pageLink (open access) external pagePDF

93. Air-Stable, Near-to-Mid-Infrared Emitting Solids of PbTe/CdTe Core-Shell Colloidal Quantum Dots
L. Protesescu, T. Zünd, M.I. Bodnarchuk, M.V. Kovalenko
ChemPhysChem, 2016, 17, 670–674. external pageLink

92. Polar-solvent-free colloidal synthesis of highly luminescent alkylammonium lead halide perovskite nanocrystals
O. Vybornyi, S. Yakunin and M. Kovalenko
Nanoscale, 2016, 8, 6278-6283. external pageLink (open access) external pagePDF

Polar-solvent-free colloidal synthesis of highly luminescent alkylammonium lead halide perovskite nanocrystals
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