Quantum dot–induced phase stabilization of α-CsPbI3 perovskite for high-efficiency photovoltaics A Swarnkar, AR Marshall, EM Sanehira, BD Chernomordik, DT Moore, ... Science 354 (6308), 92-95, 2016 | 2553 | 2016 |
Enhanced mobility CsPbI3 quantum dot arrays for record-efficiency, high-voltage photovoltaic cells EM Sanehira, AR Marshall, JA Christians, SP Harvey, PN Ciesielski, ... Science advances 3 (10), eaao4204, 2017 | 970 | 2017 |
Targeted ligand-exchange chemistry on cesium lead halide perovskite quantum dots for high-efficiency photovoltaics LM Wheeler, EM Sanehira, AR Marshall, P Schulz, M Suri, NC Anderson, ... Journal of the American Chemical Society 140 (33), 10504-10513, 2018 | 340 | 2018 |
Metal halide solid-state surface treatment for high efficiency PbS and PbSe QD solar cells RW Crisp, DM Kroupa, AR Marshall, EM Miller, J Zhang, MC Beard, ... Scientific reports 5 (1), 9945, 2015 | 274 | 2015 |
Perovskite quantum dot photovoltaic materials beyond the reach of thin films: full-range tuning of A-site cation composition A Hazarika, Q Zhao, EA Gaulding, JA Christians, B Dou, AR Marshall, ... Acs Nano 12 (10), 10327-10337, 2018 | 206 | 2018 |
Multiple exciton generation for photoelectrochemical hydrogen evolution reactions with quantum yields exceeding 100% Y Yan, RW Crisp, J Gu, BD Chernomordik, GF Pach, AR Marshall, ... Nature Energy 2 (5), 1-7, 2017 | 197 | 2017 |
Revisiting the valence and conduction band size dependence of PbS quantum dot thin films EM Miller, DM Kroupa, J Zhang, P Schulz, AR Marshall, A Kahn, S Lany, ... ACS nano 10 (3), 3302-3311, 2016 | 158 | 2016 |
Air-stable and efficient PbSe quantum-dot solar cells based upon ZnSe to PbSe cation-exchanged quantum dots S Kim, AR Marshall, DM Kroupa, EM Miller, JM Luther, S Jeong, ... ACS nano 9 (8), 8157-8164, 2015 | 121 | 2015 |
Quantum dot solar cell fabrication protocols BD Chernomordik, AR Marshall, GF Pach, JM Luther, MC Beard Chemistry of Materials 29 (1), 189-198, 2017 | 115 | 2017 |
Revealing factors influencing the operational stability of perovskite light-emitting diodes JH Warby, B Wenger, AJ Ramadan, RDJ Oliver, HC Sansom, AR Marshall, ... ACS nano 14 (7), 8855-8865, 2020 | 67 | 2020 |
CsI‐Antisolvent Adduct Formation in All‐Inorganic Metal Halide Perovskites T Moot, AR Marshall, LM Wheeler, SN Habisreutinger, TH Schloemer, ... Advanced Energy Materials 10 (9), 1903365, 2020 | 60 | 2020 |
Exploration of metal chloride uptake for improved performance characteristics of PbSe quantum dot solar cells AR Marshall, MR Young, AJ Nozik, MC Beard, JM Luther The journal of physical chemistry letters 6 (15), 2892-2899, 2015 | 57 | 2015 |
Colloidal Quantum Dot Solar Cells: Progressive Deposition Techniques and Future Prospects on Large‐Area Fabrication Q Zhao, R Han, AR Marshall, S Wang, BM Wieliczka, J Ni, J Zhang, ... Advanced Materials 34 (17), 2107888, 2022 | 55 | 2022 |
Dynamic ligand surface chemistry of excited PbS quantum dots ER Kennehan, KT Munson, GS Doucette, AR Marshall, MC Beard, ... The journal of physical chemistry letters 11 (6), 2291-2297, 2020 | 40 | 2020 |
Dimethylammonium: An A‐Site Cation for Modifying CsPbI3 AR Marshall, HC Sansom, MM McCarthy, JH Warby, OJ Ashton, ... Solar RRL 5 (1), 2000599, 2021 | 30 | 2021 |
Electron–Phonon Coupling and Resonant Relaxation from 1D and 1P States in PbS Quantum Dots ER Kennehan, GS Doucette, AR Marshall, C Grieco, KT Munson, ... ACS nano 12 (6), 6263-6272, 2018 | 30 | 2018 |
Influence of ligand structure on excited state surface chemistry of lead sulfide quantum dots ER Kennehan, KT Munson, C Grieco, GS Doucette, AR Marshall, ... Journal of the American Chemical Society 143 (34), 13824-13834, 2021 | 24 | 2021 |
Nongeminate radiative recombination of free charges in cation-exchanged PbS quantum dot films AR Marshall, MC Beard, JC Johnson Chemical Physics 471, 75-80, 2016 | 12 | 2016 |
A phosphine oxide route to formamidinium lead tribromide nanoparticles OJ Ashton, AR Marshall, JH Warby, B Wenger, HJ Snaith Chemistry of Materials 32 (17), 7172-7180, 2020 | 11 | 2020 |
Nanoparticles for photovoltaic and LED devices and methods of making the same JM Luther, A Swarnkar, AR Marshall, EM Sanehira US Patent 10,273,403, 2019 | 11 | 2019 |