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Titlebook: Solar Cells Based on Colloidal Nanocrystals; Holger Borchert Book 2014 Springer International Publishing Switzerland 2014 Absorption and F

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978-3-319-34493-5Springer International Publishing Switzerland 2014
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Solar Cells Based on Colloidal Nanocrystals978-3-319-04388-3Series ISSN 0933-033X Series E-ISSN 2196-2812
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Physics and Chemistry of Conductive Polymers of materials is given. Fundamentals enabling the conduction of electricity by organic materials are summarized, a brief overview on different types of conductive polymer is given, and selected physical and chemical properties with relevance for applications in organic electronics are discussed.
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Electrical Characterization of Solar Cellsn how efficient the conversion of light into electrical current is for photons of a specific wavelength. Spectrally resolved quantum efficiency measurements can therefore provide information on the contribution of different materials in the solar cell to the energy conversion process.
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Introduction,nergy demand, limited resources of fossil fuels and the need for more eco-friendly ways of energy production, photovoltaics is gaining more and more importance. Till date, the most common solar cell technology is based on crystalline silicon as the photoactive material. However, alternative concepts
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Physics and Chemistry of Colloidal Semiconductor NanocrystalsThe size of the crystals being strongly limited, nanocrystalline materials possess physical and chemical properties which can differ significantly from those of the corresponding bulk material. Thus, by reducing the particle size, it becomes possible to manipulate certain material properties. A prom
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