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Titlebook: High-Efficiency Solar Cells; Physics, Materials, Xiaodong Wang,Zhiming M. Wang Book 2014 Springer International Publishing Switzerland 201

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Chalcopyrite Quantum Wells and Dots in Solar-Cell Applications,ach to thin-film photovoltaics and introduce the benefits and challenges of chalcopyrite materials for that purpose. We focus on chalcopyrite quantum wells and quantum dots by describing in detail the growth procedure as well as the theoretical modeling of the obtained structures. We demonstrate tha
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High-Bandgap Silicon Nanocrystal Solar Cells: Device Fabrication, Characterization, and Modeling,lline Si tandem solar cells. This chapter focusses on Si NC embedded in silicon carbide, because silicon carbide offers electrical conduction through the matrix material. The material development is reviewed, and optical modeling is introduced as a powerful method to monitor the four material compon
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Molecular Engineering of Efficient Dyes for p-Type Semiconductor Sensitization,n this chapter, we focus on the progress related to improving p-DSC efficiency with the sensitizer. First, we summarize the specificities of p-DSC relative to conventional Grätzel cells, and then we establish the requirements for an efficient sensitizer. Second, we review all the results on publishe
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Dye-Doped Polysiloxane Rubbers for Luminescent Solar Concentrator Systems,haracterisation of luminescent solar collector (LSC) devices based on the dye Lumogen Red 305 dispersed in a matrix (polysiloxane) that, unlike the more common polycarbonate and (poly)methyl methacrylate hosts, is flexible. The feasibility of flexible LSC devices is discussed.
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Hybrid Solar Cells: Materials, Interfaces, and Devices,ootprint. Crystalline silicon is pervasively used in single junction solar cells, taking up ~80 % of the photovoltaic market. Semiconductor-based inorganic solar cells deliver relatively high conversion efficiencies at the price of high material and manufacturing costs. A great amount of research ha
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