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Nanomaterials / Solar cells / Physical chemistry / Chemical reactions / Quantum dot solar cell / Quantum dot / Electrochemistry / Multiple exciton generation / Redox / Chemistry / Physics / Quantum electronics


Multiple Exciton Generation in Quantum Dots, Quantum Dot Arrays, Quantum Dot Solar Cells, and via Molecular Singlet Fission: Application to Next Generation Solar Photon Conversion to PV and Fuel A. J. Nozik†*, M.C. Bea
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Document Date: 2014-02-16 05:48:54


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File Size: 82,84 KB

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Company

National Renewable Energy Laboratory / /

Country

United States / /

Facility

University of Colorado / /

IndustryTerm

photon energy match / separate catalytic metal cathode / energy conservation / h+ energy levels / metal-aqueous electrolyte interface / gas evolving anode / viz. metal / e-h / excited state energy levels / photon energy regions / /

Organization

Department of Chemistry and Biochemistry / Department of Physics / University of Colorado / Boulder / /

ProvinceOrState

Colorado / /

Technology

semiconductor / Quantum Dots / spectroscopy / /

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