Morphology-Tailored Synthesis of PbSe Nanocrystals and Thin Films from Bis[N,N-diisobutyl-N′-(4-nitrobenzoyl)selenoureato]lead(II). Optical properties and sub-bandgap formation of nano-crystalline Si quantum dots embedded ZnO thin film. Nachdem Gladbach im Vergleich zu den 1970ern vor allem zu Anfang der 1980er Jahre in der Bundesliga etwas abgerutscht war, konnte Rahn mit seiner Mannschaft den Einzug i… Dependence of organic photovoltaic cell efficiency on the photoluminescence wavelength of core/shell quantum dots. Elise Talgorn, Yunan Gao, Michiel Aerts, Lucas T. Kunneman, Juleon M. Schins, T. J. Savenije, Marijn A. van Huis, Herre S. J. van der Zant, Arjan J. Houtepen, Laurens D. A. Siebbeles. Patrick R. Brown, Donghun Kim, Richard R. Lunt, Ni Zhao, Moungi G. Bawendi, Jeffrey C. Grossman, and Vladimir Bulović . Se coaxial nanowire solar cells. 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B.R. The photovoltage depends on the size of the nanocrystals, increasing linearly with their effective band gap energy. This material is available free of charge via the Internet at http://pubs.acs.org. Highly reactive, flexible yet green Se precursor for metal selenide nanocrystals: Se-octadecene suspension (Se-SUS). Building Materials from Colloidal Nanocrystal Arrays: Preventing Crack Formation during Ligand Removal by Controlling Structure and Solvation. Cd 2+ doped PbS thin films for photovoltaic applications: Novel low-cost perspective. Wen-Jui Chiang, Shih-Chang Shei, Shoou-Jinn Chang. When illuminated with 100 mW/cm2 simulated AM1.5 spectrum, these solar cells exhibit short-circuit currents between 12 and 15 mA/cm2, open-circuit voltages up to 0.45 V, and a power conversion efficiency of 1.6%. Shih-Chang Shei, Wen-Jui Chiang, Shoou-Jinn Chang. x Vincent Consonni, Joe Briscoe, Erki Kärber, Xuan Li, Thomas Cossuet. 2 Na Lu, Chuanle Zhou, Yang Wang, Aline M. Elquist, Amirhossein Ghods, Ian T. Ferguson, Vishal G. Saravade, , , . Multilayer Transfer Printing for Pixelated, Multicolor Quantum Dot Light-Emitting Diodes. 2 Solar Cell Application of Metal Chalcogenide Semiconductor Nanostructures. Heterojunction Solar Cell. Das sagte der 58-Jährige im Interview mit der Düsseldorfer "Rheinischen Post". Inverted Schottky quantum dot solar cells with enhanced carrier extraction and air-stability. Yongqi Liang, Thomas Novet, James E. Thorne, Bruce A. Parkinson. Hybrid perovskite exchange of PbS quantum dots for fast and high-detectivity visible–near-infrared photodetectors. ZnO Nanowire Arrays for Enhanced Photocurrent in PbS Quantum Dot Solar Cells. Materials processing strategies for colloidal quantum dot solar cells: advances, present-day limitations, and pathways to improvement. Effect of band-aligned double absorber layers on photovoltaic characteristics of chemical bath deposited PbS/CdS thin film solar cells. Durgesh 2 Uwe R. Kortshagen, R. Mohan Sankaran, Rui N. Pereira, Steven L. Girshick, Jeslin J. Wu, and Eray S. Aydil . Lioz Etgar, Wei Zhang, Stefanie Gabriel, Stephen G. Hickey, Md K. Nazeeruddin, Alexander Eychmüller, Bin Liu, Michael Grätzel. “Has she regretted it over the years? Recent progress on quantum dot solar cells: a review. PbS Quantum Dots Embedded in a ZnS Dielectric Matrix for Bulk Heterojunction Solar Cell Applications. We report a new type of excitonic solar cell based on planar heterojunctions between PbSe semiconductor nanocrystals and thin ZnO films. A Gholizadeh, A Reyhani, P Parvin, S Z Mortazavi. Controlling Light Absorption in Charge-Separating Core/Shell Semiconductor Nanocrystals. GaN-Based White LEDs With CIS/ZnS Quantum Dots Synthesized Using Polyetheramine as Solvent. Find more information about Crossref citation counts. Bong Hoon Kim, Sooji Nam, Nuri Oh, Seong-Yong Cho, Ki Jun Yu, Chi Hwan Lee, Jieqian Zhang, Kishori Deshpande, Peter Trefonas, Jae-Hwan Kim, Jungyup Lee, Jae Ho Shin, Yongjoon Yu, Jong Bin Lim, Sang M. Won, Youn Kyoung Cho, Nam Heon Kim, Kyung Jin Seo, Heenam Lee, Tae-il Kim, Moonsub Shim, and John A. Rogers . A relative, named Dwight Dehmlow, said “there is a lot of stuff that is missing from the obituary,” according to the Star Tribune. ZnO nanowires for solar cells: a comprehensive review. For permission to reproduce, republish and Lioz Etgar, Diana Yanover, Richard Karel Čapek, Roman Vaxenburg, Zhaosheng Xue, Bin Liu, Mohammad Khaja Nazeeruddin, Efrat Lifshitz, Michael Grätzel. Solution-Processable Pyrite FeS2 Nanocrystals for the Fabrication of Heterojunction Photodiodes with Visible to NIR Photodetection. Near‐Infrared Active Lead Chalcogenide Quantum Dots: Preparation, Post‐Synthesis Ligand Exchange, and Applications in Solar Cells. Improvement of external quantum efficiency depressed by visible light-absorbing hole transport material in solid-state semiconductor-sensitized heterojunction solar cells. Tandem Solar Cells from Solution-Processed CdTe and PbS Quantum Dots Using a ZnTe–ZnO Tunnel Junction. Improved photovoltaic performances by post-deposition acidic treatments on tetrapod shaped colloidal nanocrystal solids. It’s not simple,” he said. Ultrafast Infrared Probes of Electronic Processes in Materials. Molecular Ligands Control Superlattice Structure and Crystallite Orientation in Colloidal Quantum Dot Solids.