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Titlebook: Elementary Processes in Organic Photovoltaics; Karl Leo Book 2017 Springer International Publishing Switzerland 2017 Block copolymers.Bulk

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发表于 2025-3-21 19:28:46 | 显示全部楼层 |阅读模式
书目名称Elementary Processes in Organic Photovoltaics
编辑Karl Leo
视频video
概述Presents a technology for renewable energies.Covers the results from the DFG-Schwerpunktprogramm "Elementary Process in Organic Photovoltaics".Written by top researchers in the field
丛书名称Advances in Polymer Science
图书封面Titlebook: Elementary Processes in Organic Photovoltaics;  Karl Leo Book 2017 Springer International Publishing Switzerland 2017 Block copolymers.Bulk
描述This volume presents the results of a multi-year research programme funded by the Deutsche Forschungsgemeinschaft (German Research Council), which explains how organic solar cells work. In this new promising photovoltaic technology, carbon-based materials are deposited by low-cost methods onto flexible substrates, thus allowing devices which open completely new applications like transparent coatings for building, solar cells integrated into clothing or packages, and many more. The investigation of organic solar cells is an interdisciplinary  topic, covering physics, chemistry and engineering. The different chapters address topics ranging from the synthesis of new organic materials, to the characterization of the elementary processes such as exciton transport and separation, and the principles of highly efficient device design..
出版日期Book 2017
关键词Block copolymers; Bulk-heterojunction solar cells; Charge separation at nanomolecular interfaces; Inter
版次1
doihttps://doi.org/10.1007/978-3-319-28338-8
isbn_softcover978-3-319-80329-6
isbn_ebook978-3-319-28338-8Series ISSN 0065-3195 Series E-ISSN 1436-5030
issn_series 0065-3195
copyrightSpringer International Publishing Switzerland 2017
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Elementary Processes in Organic Photovoltaics978-3-319-28338-8Series ISSN 0065-3195 Series E-ISSN 1436-5030
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Teaching English Novels in the EFL ClassroomPlanar and bulk heterojunctions of organic donor and acceptor molecules are used to understand elementary processes in photovoltaic cells. The electronic structure, interface and film morphology, excitonic behavior, device characteristics, and correlations between these properties are reviewed here using a wide range of material combinations.
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Where the Masses Met the Classes,nctional thiophene dendrimers. Three-dimensional morphologies of the polymer–metal oxide BHJs are analyzed with electron tomography and stochastic models, and are simulated with the latter, to establish the effect of processing on morphology. Device models based on stochastically simulated data of m
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https://doi.org/10.1057/9780230118591ionships, which are important for materials design. We demonstrate the influence of those structural changes on the processing ability, energy levels, optical properties, thin-film morphology, and charge transport. Furthermore, we give a detailed picture of the microscopic processes between photon a
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