2021

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.
, 2021, 8, 041407. external pageLink

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
, 2021, 15, 10, 16488–16500. external pageLink (open access) external pagePDF

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

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
ACS Nano, 2021, 15, 10775–10981. external pageLink (open access) external pagePDF

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

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

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
J. Am. Chem. Soc.2021143, 24, 9048–9059external pageLink
ArXiv version (3 March 2021): external pageLink, external pagePDF

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

Pressure‐Induced Perovskite‐to‐non‐Perovskite Phase Transition in CsPbBr3

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, 
202133, 1, 320–326. external pageLink (open access) external pagePDF

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
Adv. Sci. 2021, 2003360
. external pageLink (open access) external pagePDF

ChemRxiv version (28 August 2020). external pageLink (open access) external pagePDF

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

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
, 2021, 104, e2000206. external pageLink (open access) external pagePDF

Expanding the 0D Rb7M3X16 (M = Sb, Bi; X = Br, I) Family: Dual‐Band Luminescence in Rb7Sb3Br16
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