Solar cells

Results: 1450



#Item
901Physics / Technology / Photovoltaics / Semiconductor devices / Nanomaterials / Nanocrystal / Ultraviolet / Band gap / Erbium / Energy / Solar cells / Energy conversion

Towards more efficient solar cells

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Source URL: phys.org

Language: English - Date: 2014-12-03 00:13:29
902Thin film deposition / Energy conversion / Semiconductor devices / Indium gallium phosphide / Gallium arsenide / Wafer / Metalorganic vapour phase epitaxy / Epitaxy / Indium gallium arsenide / Chemistry / Semiconductor device fabrication / Solar cells

DESIGN APPROACHES AND MATERIALS PROCESSES FOR ULTRAHIGH EFFICIENCY LATTICE MISMATCHED MULTI-JUNCTION SOLAR CELLS

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Source URL: daedalus.caltech.edu

Language: English - Date: 2006-11-13 13:00:32
903Nanotechnology / Materials science / Plasmonic solar cell / Plasmonic Nanoparticles / Surface plasmon resonance / Nanoparticle / Gallium arsenide / Plasmon / Thin film solar cell / Chemistry / Physics / Solar cells

APPLIED PHYSICS LETTERS 93, 121904 共2008兲 Plasmonic nanoparticle enhanced light absorption in GaAs solar cells Keisuke Nakayama,a兲 Katsuaki Tanabe, and Harry A. Atwaterb兲 Thomas J. Watson Laboratory of Applied P

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Source URL: daedalus.caltech.edu

Language: English - Date: 2012-10-26 14:52:31
904Solar cells / Semiconductor devices / Energy conversion / Heterojunction / Polycrystalline silicon / Laser diode / Amorphous silicon / Diode / Electromagnetism / Energy / Technology

Submission Format for IMS2004 (Title in 18-point Times font)

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Source URL: daedalus.caltech.edu

Language: English - Date: 2014-02-03 14:54:22
905Semiconductor devices / Nitrides / Photovoltaics / Gallium arsenide / Multijunction photovoltaic cell / Indium gallium phosphide / Gallium nitride / Indium gallium arsenide / Lattice constant / Chemistry / Solar cells / Energy conversion

Optimal Materials and Deposition Technique Lead to Cost-Effective Solar Cell with Best-Ever Conversion Efficiency Based on NREL and Solar Junction technology, the commercial SJ3 concentrator solar cell—with 43.5% conve

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Source URL: www.nrel.gov

Language: English - Date: 2013-10-02 13:33:46
906Inorganic compounds / Semiconductor devices / Phosphides / Gallium arsenide / Nanowire / Light-emitting diode / Indium gallium phosphide / Gallium nitride / Gallium phosphide / Chemistry / Solar cells / Compound semiconductors

Energy & Environmental Science View Article Online Published on 17 April[removed]Downloaded by California Institute of Technology on[removed]:49:04.

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Source URL: daedalus.caltech.edu

Language: English - Date: 2013-11-13 14:50:09
907Dye-sensitized solar cells / Energy harvesting / Solar cell / Sealant / Caulking / Energy / Energy conversion / Technology

CALIFORNIA STATE SCIENCE FAIR 2011 PROJECT SUMMARY Name(s) Maegan A. Lindsey

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Source URL: www.usc.edu

Language: English - Date: 2011-04-30 00:44:48
908Antennas / Solar cells / Rectenna / Emerging technologies / Energy development / Microwave transmission / Wireless energy transfer / Rectifier / Dipole antenna / Telecommunications engineering / Electromagnetism / Technology

Microsoft Word - 11Sep_Liu

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Source URL: nssphoenix.files.wordpress.com

Language: English - Date: 2013-10-26 13:41:35
909Materials science / Energy conversion / Semiconductor devices / Solar cells / Nanoelectronics / P–n junction / Depletion region / Polycrystalline silicon / Nanorod / Nanomaterials / Technology / Physics

RADIAL PN JUNCTION NANOROD SOLAR CELLS: DEVICE PHYSICS PRINCIPLES AND ROUTES TO FABRICATION IN SILICON Brendan M. Kayes, Christine E. Richardson, Nathan S. Lewis, Harry A. Atwater California Institute of Technology, Pasa

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Source URL: daedalus.caltech.edu

Language: English - Date: 2006-10-31 04:02:22
910Semiconductor devices / Compound semiconductors / Inorganic compounds / Multijunction photovoltaic cell / Indium gallium arsenide / Gallium arsenide / Band gap / Heterojunction / Indium gallium phosphide / Chemistry / Solar cells / Energy conversion

21 January[removed]Volume 102 Number 3 Applied Physics Letters

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Source URL: daedalus.caltech.edu

Language: English - Date: 2013-02-07 19:44:45
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