Band gap

Results: 189



#Item
31Environmental chemistry / Materials science / Chemistry / Spectroscopy / Extended X-ray absorption fine structure / X-ray absorption fine structure / Band gap / Semiconductor / Condensed matter physics / Science / Physics

Photon Factory Activity Report 2006 #24 Part BChemistry NW10A/2006G059 An EXAFS observation of Ag local structre of Ag(DMe-DCNQI)2 photoproduct

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Source URL: pfwww.kek.jp

Language: English - Date: 2010-01-05 10:33:34
32Quantum phases / Charge carriers / Fermions / Topological insulator / Fermi surface / Electronic band structure / Free electron model / Band gap / Electron / Physics / Condensed matter physics / Spintronics

PDF Document

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Source URL: www.princeton.edu

Language: English - Date: 2014-09-10 14:58:55
33Physics / Energy conversion / Semiconductor devices / Photovoltaics / Band gap / Indium nitride / Thin film solar cell / CZTS / Diode / Chemistry / Solar cells / Energy

Temperature dependence of Cu2ZnSn(SexS1-x )4 solar cells  J. Krustok1, R. Josepson1, T. Raadik1, M. Danilson1, D. Meissner1,2 1 Tallinn University of Technology, Ehitajate tee 5, 19086 Tallinn, Estonia 1 crystalsol

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Source URL: www.quantsol.org

Language: English - Date: 2010-03-02 14:58:02
34Silicon / Energy conversion / Energy harvesting / Solar cell / Band gap / Thermal oxidation / Silicon dioxide / Passivation / Chemistry / Technology / Matter

Electronic Properties and Gap State Defect Passivation of Si/SiO2 Nanostructures Bert Stegemann, Daniel Sixtensson, Manfred Schmidt Hahn Meitner Institute Berlin, Dept. Silicon Photovoltaics, Kekuléstr.5, DBerlin

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Source URL: www.quantsol.org

Language: English - Date: 2010-05-11 12:46:16
35Semiconductor devices / Compound semiconductors / Inorganic compounds / Indium gallium arsenide / Multijunction photovoltaic cell / Gallium arsenide / Indium gallium phosphide / Band gap / Shockley–Queisser limit / Chemistry / Solar cells / Energy conversion

TRANSFORMATION AND STORAGE OF SOLAR ENERGY 775 CHIMIA 2007, 61, No. 12 doi:chimia

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Source URL: www.quantsol.org

Language: English - Date: 2009-03-18 07:49:21
36Solar cells / Energy conversion / Semiconductor devices / Quantum electrodynamics / Shockley–Queisser limit / Band gap / Solar cell efficiency / Photon / Solar cell / Physics / Energy / Photovoltaics

Efficient up-conversion of non-concentrated solar radiation for solar cells T.Trupke, M.A.Green Centre for Third Generation Photovoltaics, University of New South Wales, NSW 2052, Australia, Fax +

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Source URL: www.quantsol.org

Language: English - Date: 2009-03-20 11:54:55
37Quantum chemistry / Quasiparticles / Catalysis / Photocatalysis / Photocatalytic water splitting / Electron hole / Titanium dioxide / Valence band / Band gap / Chemistry / Photochemistry / Charge carriers

Classroom Activity 10 Big Question: How can we reduce our reliance on fossil fuels? Quiz: Photocatalysis Read ‘Just Add Sunlight: The Fuel of the Future’ in e-Science magazine issue 5 (Mayand answer the follow

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Source URL: www.sciences.adelaide.edu.au

Language: English - Date: 2013-03-14 19:03:11
38Heterojunction / Spintronics / Multiferroics / Band gap / Superlattice / Electronic band structure / Semiconductor / Conduction band / Energy level / Chemistry / Physics / Condensed matter physics

ISSN 10637834, Physics of the Solid State, 2014, Vol. 56, No. 5, pp. 1039–1047. © Pleiades Publishing, Ltd., 2014. Original Russian Text © A.I. Lebedev, 2014, published in Fizika Tverdogo Tela, 2014, Vol. 56, No. 5,

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Source URL: scon155.phys.msu.su

Language: English - Date: 2014-06-07 06:23:31
39Semiconductor devices / Technology / Photovoltaics / Solar cells / Shockley–Queisser limit / Band gap / Photon / Physics / Energy / Energy conversion

Detailed balance method for thin photovoltaic converters 1 T. Markvart1 and P.T. Landsberg2 School of Engineering Sciences and 2School of Mathematical Studies University of Southampton, Southampton SO17 1BJ, UK

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Source URL: www.quantsol.org

Language: English - Date: 2009-03-20 11:56:18
40Electronic band structure / Electron / Ludwig Boltzmann / Mercury telluride / Insulator / Introduction to quantum mechanics / Zeeman effect / Band gap / Quantum mechanics / Physics / Topological insulator / Spintronics

Berry Curvature as a Multi-Band Effect in Boltzmann Equations Asger Johannes Skjøde Bolet Supervisor: Jens Paaske

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Source URL: qdev.nbi.ku.dk

Language: English - Date: 2015-04-30 23:12:38
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