- Compositional texture engineering for highly stable wide-bandgap perovskite solar cells
2022/12/22 by Qi Jiang, Jinhui Tong, Rebecca A. Scheidt +15 · 31 citations
Chemistry · Engineering · Materials Science · #Band gap #Bromine #Chemical engineering #Chemistry #Composite material #Conducting polymers and applications #Crystallization #Electrical engineering #Energy conversion efficiency #Halide #Inorganic chemistry #Materials science #Metallurgy #Open-circuit voltage #Optoelectronics #Perovskite (structure) #Perovskite Materials and Applications #Quantum Dots Synthesis And Properties #Solar cell #Tandem #Volt #Voltage
- Enhanced Wide‐Angle Energy Conversion Using Structure‐Tunable Waveguide Arrays as Encapsulation Materials for Silicon Solar Cells
2018/12/18 by Saeid Biria, Fu‐Hao Chen, Ian D. Hosein · 1 citation
Engineering · Physics and Astronomy · Materials Science · #Photonic and Optical Devices #Photonic Crystals and Applications #Optical Coatings and Gratings #Materials science #Energy conversion efficiency #Optoelectronics #Cladding (metalworking) #Waveguide #Optics #Quantum efficiency #Silicon #Photomask #Solar cell efficiency #Solar cell #Nanotechnology #Composite material #Resist
- Polymer Encapsulants Incorporating Light‐Guiding Architectures to Increase Optical Energy Conversion in Solar Cells
2017/12/22 by Saeid Biria, Fu Hao Chen, Shreyas Pathreeker +1 · 1 citation
Engineering · Physics and Astronomy · #Photonic and Optical Devices #Photonic Crystals and Applications #Semiconductor Lasers and Optical Devices #Materials science #Fabrication #Optoelectronics #Polymer #Solar cell #Energy conversion efficiency #Nanotechnology #Polymer solar cell #Hybrid solar cell #Composite material
- Design of Donor Polymers with Strong Temperature-Dependent Aggregation Property for Efficient Organic Photovoltaics
2017/09/15 by Huawei Hu, Philip C. Y. Chow, Guangye Zhang +4 · 18 citations
Engineering · Materials Science · #Composite material #Conducting polymers and applications #Crystallinity #Electrical engineering #Energy conversion efficiency #Materials science #Nanotechnology #Optoelectronics #Organic Electronics and Photovoltaics #Organic solar cell #Perovskite Materials and Applications #Photovoltaic system #Photovoltaics #Polymer #Polymer solar cell
- Raising the one-sun conversion efficiency of III–V/Si solar cells to 32.8% for two junctions and 35.9% for three junctions
2017/08/25 by Stephanie Essig, Christophe Allebé, Timothy Remo +15 · 2 citations
Engineering · Materials Science · #Chalcogenide Semiconductor Thin Films #Electrical engineering #Energy conversion efficiency #Engineering #Engineering physics #Materials science #Optoelectronics #Photovoltaic system #Physics #Quantum Dots Synthesis And Properties #Solar cell #Solar cell efficiency #Tandem #Triple junction #solar cell performance optimization
- All‐Angle Invisibility Cloaking of Contact Fingers on Solar Cells by Refractive Free‐Form Surfaces
2017/07/04 by Martin Schumann, Malte Langenhorst, Michael Smeets +3 · 2 citations
Engineering · Physics and Astronomy · #Near-Field Optical Microscopy #Photonic Crystals and Applications #Photonic and Optical Devices #Cloaking #Materials science #Solar cell #Optoelectronics #Optics #Polymer solar cell #Silicon #Energy conversion efficiency #Photonics #Metamaterial
- Predicting efficiency of solar cells based on transparent conducting electrodes
2017/01/03 by Ankush Kumar · 1 citation
Engineering · #Nanowire Synthesis and Applications #Thin-Film Transistor Technologies #Nanomaterials and Printing Technologies #Solar cell #Materials science #Transmittance #Optoelectronics #Electrode #Solar cell efficiency #Theory of solar cells #Energy conversion efficiency #Electrical conductor #Void (composites) #Composite material #Physics
- Design and fabrication of silicon nanowires towards efficient solar cells
2016/11/12 by Peng Yu, Jiang Wu, Shenting Liu +4 · 1 citation
Engineering · Materials Science · Physics and Astronomy · #Crystalline silicon #Electrical engineering #Energy conversion efficiency #Engineering #Engineering physics #Fabrication #Hybrid solar cell #Materials science #Nanotechnology #Nanowire #Nanowire Synthesis and Applications #Optoelectronics #Photovoltaic system #Polymer solar cell #Quantum dot solar cell #Semiconductor #Semiconductor materials and interfaces #Silicon #Silicon Nanostructures and Photoluminescence #Silicon nanowires #Solar cell #Solar cell efficiency
- Quantum dot sensitized solar cell: Recent advances and future perspectives in photoanode
2016/06/22 by Darshan Sharma, Ranjana Jha, Shiv Kumar · 1 citation
Energy · Materials Science · #Advanced Photocatalysis Techniques #Band gap #Electrical engineering #Energy conversion efficiency #Energy transformation #Fabrication #Hybrid solar cell #Materials science #Multiple exciton generation #Nanotechnology #Optoelectronics #Photovoltaic system #Physics #Polymer solar cell #Quantum Dots Synthesis And Properties #Quantum dot #Quantum dot solar cell #Solar cell #Solar energy #TiO2 Photocatalysis and Solar Cells
- Zn–Cu–In–Se Quantum Dot Solar Cells with a Certified Power Conversion Efficiency of 11.6%
2016/03/10 by Jun Du, Zhonglin Du, Jin‐Song Hu +8 · 2 citations
Materials Science · Engineering · Energy · Chemistry · #Quantum Dots Synthesis And Properties #Chalcogenide Semiconductor Thin Films #Advanced Photocatalysis Techniques #Quantum dot #Photocurrent #Energy conversion efficiency #Chemistry #Optoelectronics #Band gap #Photovoltaic system #Materials science
- Tabulated values of the Shockley–Queisser limit for single junction solar cells
2016/02/26 by Sven Rühle · 2 citations
Engineering · Physics and Astronomy · #Chalcogenide Semiconductor Thin Films #Current density #Electrical engineering #Energy conversion efficiency #Limit (mathematics) #Materials science #Maximum power principle #Open-circuit voltage #Optics #Optoelectronics #Photovoltaic system #Physics #Power (physics) #Power density #Semiconductor Quantum Structures and Devices #Short circuit #Solar cell #Solar cell efficiency #Solar energy #Solar simulator #Theory of solar cells #Thermodynamics #Voltage #solar cell performance optimization
- Four-Junction Wafer-Bonded Concentrator Solar Cells
2015/12/01 by Frank Dimroth, T.N.D. Tibbits, M. Niemeyer +14 · 2 citations
Engineering · #solar cell performance optimization #Chalcogenide Semiconductor Thin Films #Silicon and Solar Cell Technologies #Suns in alchemy #Optoelectronics #Materials science #Wafer #Solar cell #Concentrator #Energy conversion efficiency #Wafer bonding #Band gap #Gallium arsenide #Germanium #Solar cell efficiency #Silicon #Optics
- Relationship between thermoelectric figure of merit and energy conversion efficiency
2015/06/22 by Hee Seok Kim, Weishu Liu, Gang Chen +2 · 3 citations
Materials Science · Engineering · #Advanced Thermoelectric Materials and Devices #Thermal Radiation and Cooling Technologies #Thermal properties of materials #Figure of merit #Seebeck coefficient #Dimensionless quantity #Thermoelectric effect #Thermal conductivity #Energy conversion efficiency #Materials science #Thermoelectric materials #Electrical resistivity and conductivity #Electricity #Engineering physics #Condensed matter physics #Thermodynamics #Physics #Electrical engineering #Optoelectronics #Composite material #Engineering
- The efficiency limit of CH3NH3PbI3 perovskite solar cells
2015/06/01 by Wei E. I. Sha, Xingang Ren, Luzhou Chen +1 · 29 citations
Engineering · Materials Science · Physics and Astronomy · #Chemical and Physical Properties of Materials #Detailed balance #Energy conversion efficiency #Gallium arsenide #Limit (mathematics) #Perovskite (structure) #Perovskite Materials and Applications #Perovskite solar cell #Refractive index #Solar cell #Trapping #cond-mat.mtrl-sci #solar cell performance optimization
- High efficiency heterojunction solar cells on n-type kerfless mono crystalline silicon wafers by epitaxial growth
2015/06/01 by Eiji Kobayashi, Y. Watabe, Ruiying Hao +1 · 1 citation
Engineering · Materials Science · #Silicon and Solar Cell Technologies #Thin-Film Transistor Technologies #Silicon Nanostructures and Photoluminescence #Epitaxy #Wafer #Optoelectronics #Materials science #Heterojunction #Solar cell #Energy conversion efficiency #Silicon #Crystalline silicon #Open-circuit voltage #Monocrystalline silicon #Voltage #Nanotechnology #Electrical engineering #Engineering #Layer (electronics)
- Supercharging Silicon Solar Cell Performance by Means of Multijunction Concept
2015/02/16 by Ibraheem Almansouri, Anita Ho‐Baillie, Stephen Bremner +1 · 2 citations
Engineering · #Silicon and Solar Cell Technologies #solar cell performance optimization #Chalcogenide Semiconductor Thin Films #Tandem #Stack (abstract data type) #Materials science #Silicon #Quantum efficiency #Optoelectronics #Solar cell #Wafer #Auger effect #Absorption (acoustics) #Substrate (aquarium) #Crystalline silicon #Photovoltaic system #Energy conversion efficiency #Solar cell efficiency #Auger #Computer science #Physics #Electrical engineering #Composite material #Atomic physics
- Intermediate Band Solar Cells
2014/07/10 by Yoshitaka Okada, Tomah Sogabe, Yasushi Shoji · 1 citation
Physics and Astronomy · Materials Science · Engineering · #Semiconductor Quantum Structures and Devices #Quantum Dots Synthesis And Properties #Chalcogenide Semiconductor Thin Films #Tandem #Photovoltaics #Optoelectronics #Materials science #Engineering physics #Nanostructure #Multiple exciton generation #Energy conversion efficiency #Nanotechnology #Quantum dot #Limit (mathematics) #Quantum #Physics #Photovoltaic system #Engineering #Electrical engineering #Quantum mechanics
- Ultralow thermal conductivity and high thermoelectric figure of merit in SnSe crystals
2014/04/15 by Li-Dong Zhao, Li‐Dong Zhao, Shih‐Han Lo +9 · 15 citations
Chemistry · Engineering · Materials Science · #Advanced Thermoelectric Materials and Devices #Anharmonicity #Anisotropy #Chalcogenide Semiconductor Thin Films #Chemistry #Composite material #Condensed matter physics #Crystal structure #Crystallography #Energy conversion efficiency #Figure of merit #Materials science #Optics #Optoelectronics #Orthorhombic crystal system #Physics #Seebeck coefficient #Thermal conductivity #Thermal properties of materials #Thermodynamics #Thermoelectric effect #Thermoelectric materials
- Reassessment of the Limiting Efficiency for Crystalline Silicon Solar Cells
2013/07/10 by Armin Richter, Martin Hermle, Stefan W. Glunz · 5 citations
Engineering · Physics and Astronomy · #Silicon and Solar Cell Technologies #solar cell performance optimization #Semiconductor materials and interfaces #Silicon #Solar cell #Materials science #Solar cell efficiency #Crystalline silicon #Doping #Optoelectronics #Band gap #Monocrystalline silicon #Carrier lifetime #Theory of solar cells #Energy conversion efficiency #Photovoltaic system #Electrical engineering
- The opto-electronic physics that broke the efficiency limit in solar cells
2012/06/01 by Eli Yablonovitch, Owen D. Miller, Sarah Kurtz · 1 citation
Engineering · Physics and Astronomy · Mathematics · #solar cell performance optimization #Semiconductor Quantum Structures and Devices #Chalcogenide Semiconductor Thin Films #Solar cell #Photonics #Optoelectronics #Limit (mathematics) #Physics #Diode #Photon #Open-circuit voltage #Solar cell efficiency #Quantum efficiency #Energy conversion efficiency #Voltage #Optics #Quantum mechanics #Mathematics
- Boosting the Efficiency of Quantum Dot Sensitized Solar Cells through Modulation of Interfacial Charge Transfer
2012/04/11 by Prashant V. Kamat · 2 citations
Materials Science · Energy · Chemistry · #Quantum Dots Synthesis And Properties #TiO2 Photocatalysis and Solar Cells #Advanced Photocatalysis Techniques #Quantum dot #Photocurrent #Semiconductor #Materials science #Optoelectronics #Heterojunction #Charge carrier #Electron transfer #Energy conversion efficiency #Nanotechnology #Chemistry #Photochemistry
- Effects of germanium addition to copper phthalocyanine/fullerene-based solar cells
2012/04/10 by Takeo Oku, Kazuma Kumada, Atsushi Suzuki +1 · 1 citation
Engineering · Chemistry · Materials Science · #Organic Electronics and Photovoltaics #Fullerene Chemistry and Applications #Carbon Nanotubes in Composites #Phthalocyanine #Fullerene #Copper #Germanium #Copper phthalocyanine #Materials science #Organic solar cell #Transmission electron microscopy #Solar cell #Quantum dot solar cell #Nanoparticle #Energy conversion efficiency #Optoelectronics #Nanotechnology #Polymer solar cell #Chemistry #Silicon #Composite material #Organic chemistry #Metallurgy #Polymer
- Thin Film Solar Cells: Research in an Industrial Perspective
2012/03/01 by Marika Edoff · 1 citation
Engineering · Materials Science · Physics and Astronomy · #Chalcogenide Semiconductor Thin Films #Copper indium gallium selenide solar cells #Electrical engineering #Electricity #Energy conversion efficiency #Engineering #Engineering physics #Materials science #Nanotechnology #Optoelectronics #Photovoltaic system #Photovoltaics #Quantum Dots Synthesis And Properties #Semiconductor materials and interfaces #Solar cell #Solar energy #Thin film #Wafer
- Mn-Doped Quantum Dot Sensitized Solar Cells: A Strategy to Boost Efficiency over 5%
2012/01/23 by Pralay K. Santra, Prashant V. Kamat · 3 citations
Materials Science · Energy · Engineering · Chemistry · #Quantum Dots Synthesis And Properties #TiO2 Photocatalysis and Solar Cells #Chalcogenide Semiconductor Thin Films #Quantum dot #Chemistry #Energy conversion efficiency #Solar cell #Graphene #Doping #Mesoscopic physics #Optoelectronics #Nanotechnology #Photovoltaic system #Electrolyte #Electrode #Oxide #Materials science #Physics #Electrical engineering #Physical chemistry #Condensed matter physics
- Sun-Believable Solar Paint. A Transformative One-Step Approach for Designing Nanocrystalline Solar Cells
2011/12/06 by Matthew P. Genovese, Ian V. Lightcap, Prashant V. Kamat · 5 citations
Chemistry · Energy · Materials Science · #Advanced Photocatalysis Techniques #Chemistry #Electrical engineering #Electrode #Energy conversion efficiency #Hybrid solar cell #Materials science #Nanocrystal #Nanocrystalline material #Nanotechnology #Open-circuit voltage #Optoelectronics #Photovoltaic system #Polymer solar cell #Quantum Dots Synthesis And Properties #Quantum dot #Quantum dot solar cell #Semiconductor #Solar cell #TiO2 Photocatalysis and Solar Cells #Voltage
- Practical Roadmap and Limits to Nanostructured Photovoltaics
2011/11/07 by Richard R. Lunt, Timothy P. Osedach, Patrick R. Brown +2 · 2 citations
Engineering · Materials Science · #Nanowire Synthesis and Applications #Quantum Dots Synthesis And Properties #solar cell performance optimization #Photovoltaic system #Photovoltaics #Materials science #Nanotechnology #Energy conversion efficiency #Limit (mathematics) #Tandem #Engineering physics #Energy transformation #Nano- #Computer science #Electrical engineering #Engineering #Optoelectronics
- Sb2S3-Based Mesoscopic Solar Cell using an Organic Hole Conductor
2010/04/28 by Soo‐Jin Moon, Yafit Itzhaik, Jun‐Ho Yum +3 · 2 citations
Materials Science · Engineering · #Quantum Dots Synthesis And Properties #Perovskite Materials and Applications #Chalcogenide Semiconductor Thin Films #Mesoscopic physics #Materials science #Solar cell #Monochromatic color #Energy conversion efficiency #Nanoporous #Nanocrystalline material #Optoelectronics #Solar cell efficiency #Sulfide #Photoelectric effect #Optics #Nanotechnology #Metallurgy #Condensed matter physics #Physics
- Polymer-based solar cells
2007/11/01 by Alex C. Mayer, Shawn R. Scully, Brian E. Hardin +2 · 3 citations
Engineering · Materials Science · #Organic Electronics and Photovoltaics #Conducting polymers and applications #Nanowire Synthesis and Applications #Polymer #Materials science #Throughput #Nanotechnology #Nanoscopic scale #Diffusion #Polymer solar cell #Energy conversion efficiency #Solar energy #Exciton #Low energy #Hybrid solar cell #Solar cell #Optoelectronics #Computer science #Telecommunications #Electrical engineering #Physics #Engineering
- MORTALITY TRENDS AND TRAITS OF HARDWOOD ADVANCE REGENERATION FOLLOWING SEASONAL PRESCRIBED FIRES
2003/01/01 by Omer Korech, Jeffrey M. Gordon, Eugene A. Katz +4 · 2 citations
Engineering · Environmental Science · #Biology #Computer science #Concentrator #Dielectric #Ecology #Electrical engineering #Energy conversion efficiency #Engineering #Environmental science #Equivalent series resistance #Fire effects on ecosystems #Forestry #Geography #Hardwood #Materials science #Nonimaging optics #Optics #Optoelectronics #Photonic and Optical Devices #Photovoltaic thermal hybrid solar collector #Physics #Rangeland and Wildlife Management #Regeneration (biology) #Seedling growth and survival studies #Semiconductor Lasers and Optical Devices #Shading #Solar cell #Solar cell efficiency #Solar energy #Solar mirror #Voltage #solar cell performance optimization
- 19.8% efficient “honeycomb” textured multicrystalline and 24.4% monocrystalline silicon solar cells
1998/10/05 by Jianhua Zhao, Aihua Wang, Martin A. Green +1 · 3 citations
Materials Science · Engineering · Energy · #Silicon Nanostructures and Photoluminescence #Silicon and Solar Cell Technologies #TiO2 Photocatalysis and Solar Cells #Monocrystalline silicon #Materials science #Wafer #Solar cell #Silicon #Optoelectronics #Etching (microfabrication) #Texture (cosmology) #Energy conversion efficiency #Optics #Nanotechnology
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