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A review on quantum dot sensitized solar cells: Past, present and future towards carrier multiplication with a possibility for higher efficiency Sahu A, Garg A, Dixit A Solar Energy, 203, 210, 2020 |
2 |
First-principles calculations of electronic coupling effects in silicon nanocrystals: Influence on near band-edge states and on carrier multiplication processes Marri I, Govoni M, Ossicini S Solar Energy Materials and Solar Cells, 145, 162, 2016 |
3 |
Dramatic Enhancement of Photoluminescence Quantum Yields for Surface-Engineered Si Nanocrystals within the Solar Spectrum Svrcek V, Dohnalova K, Mariotti D, Trinh MT, Limpens R, Mitra S, Gregorkiewicz T, Matsubara K, Kondo M Advanced Functional Materials, 23(48), 6051, 2013 |
4 |
Auger generation effect on the thermodynamic efficiency of Cu(In,Ga)Se-2 thin film solar cells Gorji NE, Reggiani U, Sandrolini L Thin Solid Films, 537, 285, 2013 |
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Theoretical efficiency of 3rd generation solar cells: Comparison between carrier multiplication and down-conversion Abrams ZR, Gharghi M, Niv A, Gladden C, Zhang X Solar Energy Materials and Solar Cells, 99, 308, 2012 |
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Requisites to realize high conversion efficiency of solar cells utilizing carrier multiplication Takeda Y, Motohiro T Solar Energy Materials and Solar Cells, 94(8), 1399, 2010 |
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Luminescent properties of doped freestanding silicon nanocrystals embedded in MEH-PPV Svrcek V, Fujiwara H, Kondo M Solar Energy Materials and Solar Cells, 93(6-7), 774, 2009 |
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The detailed analysis of auger effect on the efficiency of intermediate band solar cells Navruz TS, Saritas M Solar Energy Materials and Solar Cells, 93(11), 1913, 2009 |
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Electron beam induced current investigation of high-voltage 4H silicon carbide diodes Osterman J, Hallen A, Jargelius M, Zimmermann U, Galeckas A, Breitholtz B Materials Science Forum, 338-3, 777, 2000 |
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On the ideal performance of solar cells with larger-than-unity quantum efficiency De Vos A, Desoete B Solar Energy Materials and Solar Cells, 51(3), 413, 1998 |