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Charge transport in organic semiconductors: From incoherent to coherent
Quantum decoherence in organic charge transport is a complicated but crucial topic. In this paper, several theoretical approaches corresponding to it, from incoherent to coherent, are comprehensively reviewed. We mainly focus on the physical insight provided by each theory and extent of its validity...
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Published in: | Chinese science bulletin 2013-08, Vol.58 (22), p.2669-2676 |
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description | Quantum decoherence in organic charge transport is a complicated but crucial topic. In this paper, several theoretical approaches corresponding to it, from incoherent to coherent, are comprehensively reviewed. We mainly focus on the physical insight provided by each theory and extent of its validity. The aim of this review is to clarify some contentious issues and elaborate on the promising perspectives provided by different approaches. The device model approaches based on both continuous and discretized treatments of the transporting layer will be first discussed. The prominent focus of this review will be devoted to the dynamic disorder model and its variants considering that it is the most promising approach to tackle charge transport problems in organic materials. We will also address other theories such as the variational method. |
doi_str_mv | 10.1007/s11434-013-5931-y |
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Sci. Bull</addtitle><addtitle>Chinese Science Bulletin</addtitle><description>Quantum decoherence in organic charge transport is a complicated but crucial topic. In this paper, several theoretical approaches corresponding to it, from incoherent to coherent, are comprehensively reviewed. We mainly focus on the physical insight provided by each theory and extent of its validity. The aim of this review is to clarify some contentious issues and elaborate on the promising perspectives provided by different approaches. The device model approaches based on both continuous and discretized treatments of the transporting layer will be first discussed. The prominent focus of this review will be devoted to the dynamic disorder model and its variants considering that it is the most promising approach to tackle charge transport problems in organic materials. 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subjects | Charge transport Chemistry/Food Science Coherence Devices Disorders Dynamics Earth Sciences Engineering equations Humanities and Social Sciences Life Sciences material forms multidisciplinary organic compounds Organic materials Physics Review Science Science (multidisciplinary) semiconductors Transporting Variational methods 变分法 有机半导体 有机材料 洞察力 电荷传输 相干效应 离散化处理 设备型号 |
title | Charge transport in organic semiconductors: From incoherent to coherent |
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