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IEEE Transactions on Electron Devices, ISSN 0018-9383, 12/2018, Volume 65, Issue 12, pp. 5428 - 5433
Journal Article
Physical Review Letters, ISSN 0031-9007, 2011, Volume 106, Issue 2, pp. 028701 - 028701
Using the unique features of the electronic band structure of GaNxAs1-x alloys, we have designed, fabricated and tested a multiband photovoltaic device. The... 
PHYSICS, MULTIDISCIPLINARY | ALLOYS | SEMICONDUCTORS | GAP | NITROGEN | LIMIT | DOT INTERMEDIATE-BAND | EFFICIENCY
Journal Article
Solar Energy Materials and Solar Cells, ISSN 0927-0248, 03/2012, Volume 98, pp. 240 - 244
The intermediate band solar cell (IBSC) is based on a novel photovoltaic concept and has a limiting efficiency of 63.2%, which compares favorably with the... 
Solar cell | Recombination | Concentrated light | Quantum dots | Intermediate band | PHYSICS, APPLIED | ENERGY & FUELS | MATERIALS SCIENCE, MULTIDISCIPLINARY | EFFICIENCY | Solar energy industry | Nanotechnology
Journal Article
Progress in Photovoltaics: Research and Applications, ISSN 1062-7995, 06/2019, Volume 27, Issue 6, pp. 528 - 539
Journal Article
Journal Article
IEEE Microwave and Wireless Components Letters, ISSN 1531-1309, 04/2019, Volume 29, Issue 4, pp. 276 - 278
Journal Article
ACS Applied Materials and Interfaces, ISSN 1944-8244, 08/2017, Volume 9, Issue 34, pp. 28737 - 28742
The ultraviolet (UV) photodetectors have significant applications different fields. High detectivity, high responsivity and wide active area are required to... 
wide bandgap semiconductor | Bi-doped SnO | ultraviolet photodetector | intermediate band semiconductor | thin films | MATERIALS SCIENCE, MULTIDISCIPLINARY | SILICON | PEROVSKITE PHOTODETECTORS | NANOSCIENCE & NANOTECHNOLOGY | BLIND | DETECTORS | FILMS | OPTOELECTRONIC DEVICES | SNO2 | QUANTUM EFFICIENCY | SPECTRUM | Bi-doped SnO2 | NARROW-BAND
Journal Article
Solar Energy Materials and Solar Cells, ISSN 0927-0248, 10/2015, Volume 141, pp. 39 - 48
The calculation of the energy spectrum and absorption coefficients of quantum dot nanostructured intermediate band solar cells using the Empiric K·P... 
Energy spectrum | Intermediate band solar cells | Photon absorption | Quantum calculations | STATES | PHYSICS, APPLIED | ENERGY & FUELS | MATERIALS SCIENCE, MULTIDISCIPLINARY | SILICON | CYCLOTRON | GERMANIUM | RESONANCE | CRYSTALS | ELECTRONIC-STRUCTURE | Solar cells | Solar energy industry | Solar batteries
Journal Article
Materials Letters, ISSN 0167-577X, 05/2018, Volume 218, pp. 139 - 141
Intermediate band (IB) solar cell has shown a significant amount of efficiency improvement. However IB cell suffers from demerits like high rate of... 
Quantum dot | Recombination | Ratchet band | Intermediate band | PHYSICS, APPLIED | MATERIALS SCIENCE, MULTIDISCIPLINARY | EFFICIENCY | Spectral response | Quantum efficiency | Photovoltaic cells | Computer simulation | Quantum dots | Efficiency | Carrier lifetime
Journal Article
Solar Energy Materials and Solar Cells, ISSN 0927-0248, 07/2012, Volume 102, pp. 44 - 49
Surface plasmon enhancement effect is investigated in InAs/GaAs quantum dots solar cell. A nontrivial enhancement was observed in the photocurrent, quantum... 
Solar cell | Quantum dot | Surface plasmon | Metallic nanoparticles | Intermediate band | PHYSICS, APPLIED | SELF-ASSEMBLED MONOLAYERS | ENERGY & FUELS | MATERIALS SCIENCE, MULTIDISCIPLINARY | SILVER
Journal Article
Solar Energy Materials and Solar Cells, ISSN 0927-0248, 04/2016, Volume 147, pp. 94 - 100
Self-assembled InAs quantum dots (QD) in a GaAs Sb matrix are studied using photoluminescence. Increasing the Sb composition in the GaAs Sb matrix reduces the... 
Type-II quantum dots | Intermediate band solar cell | Defect mediated tunneling | PHYSICS, APPLIED | ENERGY & FUELS | MATERIALS SCIENCE, MULTIDISCIPLINARY | GROWTH | LIMIT | LAYER | EFFICIENCY
Journal Article
physica status solidi (b), ISSN 0370-1972, 07/2018, Volume 255, Issue 7, pp. 1800031 - n/a
Three‐photon absorption can be realized in a semiconductor with a half‐filled intermediate band. Such half‐filled intermediate band is shown in AgAlSe 2 after... 
first‐principles calculations | doping | Ag‐based chalcopyrite compounds | intermediate band solar cells | first-principles calculations | Ag-based chalcopyrite compounds | PHYSICS, CONDENSED MATTER | ENERGY | CU2ZNSNS4 THIN-FILMS | SEMICONDUCTORS | CUGAS2 | LIMIT | PHOTOVOLTAIC MATERIAL | ABSORPTION | EFFICIENCY | Solar cells | Solar batteries | Analysis
Journal Article