2018

For up-to-date information, please visit external page Researcher ID or external page Google Citations

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 page Link (open access) external page PDF

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 page Link (open access) external page PDF

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 page Link

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 page Link

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 page Link (open access) external page PDF

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 page Link (open access) external page PDF

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 page Link (open access) external page PDF

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 page Link (open access) external page PDF

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., 2018, 18, 7546–7551. external page Link (open access) external page PDF

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 page Link (open access) external page PDF

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 page Link

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 page Link (open access) external page PDF

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 page Link

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 page Link (open access) external page PDF

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 page Link

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 page Link

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 page Link (open access) external page PDF, (external page ACS Live slides)

Highlight:external page CdSe 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 page Link

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 page Link

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 page Link (open access) external page PDF

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 page Link

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 page Link

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 page Link (open access) external page PDF, (external page ACS 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 page Link

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 page Link (open access) external page PDF

170

ArXiv version (5 Apr 2018): external page Link, external page PDF

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

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

Highlights: ETH News, 2018, November 7 (“Quantum light from superlattices” by Joachim Schnabl); Empa News, 2018, November 7 (“external page A burst of ”synchronous” light” by Cornelia Zogg); Laser Focus World, 2018, December ("external page Perovskite 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 page Link (open access) external page PDF

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 page Link

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 page Link (open access) external page PDF

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 page Link (open access) external page PDF

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 page One step further towards cheap aluminium batteries” by Fabio Bergamin); Südostschweiz, 2018, September 11 ("external page Nachhaltige 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 page Link (open access) external page PDF

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 page Link (open access) external page PDF

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

Highlights:

Science perspectives and commentary: “external page Layers 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 page Link

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 page Link (open access) external page PDF

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 page Link, (open access) external page PDF, (external page ACS 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 page Link (open access) external page PDF

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 page Link (open access) external page PDF

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 page Link (open access) external page PDF

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 page Link (open access) external page PDF

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 page Link (open access) external page PDF

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 page One step further towards cheap aluminium batteries” by Fabio Bergamin); Südostschweiz, 2018, September 11 ("external page Nachhaltige 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 page Link (open access) external page PDF

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 page Link

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 page Link

Highlights:

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