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Organic solar cell optimizations

机译:有机太阳能电池优化

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This paper presents recent experimental and theoretical approaches for optimizing organic solar cell efficiencies in both space and energy/time domains. Specifically, in spatial domain, a 'tertiary' block copolymer supra-molecular nano structure has been designed, and a series of -DBAB- type of block copolymers, where D is a conjugated donor block, A is a conjugated acceptor block, and B is a non-conjugated and flexible bridge unit, have been synthesized and preliminarily examined for target photovoltaic functions. For instance, in comparison to simple donor/acceptor (D/A) blend film, a corresponding -DBAB- block copolymer film exhibited much better photoluminescence (PL) quenching (from less then 70% to over 90%), biased conductivity (2-3 orders of magnitude better), and photo conductivity (100% increase). These are attributed mainly to spatial domain improvement for charge carrier generation and transportation. In energy level domain, the photo induced charge separation appears most efficient when the donor/acceptor frontier orbital energy offset is close to the sum of two major energy costs: the charge separation reorganization energy and the exciton binding energy. Other donor/acceptor frontier orbital energy offsets are also identified where the charge recombination becomes most severe, and where the charge separation rate constant over charge recombination rate constant become largest. These energy offset values are very critical for designing high efficiency organic solar cells. (C) 2005 Springer Science + Business Media, Inc.
机译:本文介绍了在空间和能量/时域上优化有机太阳能电池效率的最新实验和理论方法。具体而言,在空间领域,已设计了“叔”嵌段共聚物超分子纳米结构,并设计了一系列-DBAB-型嵌段共聚物,其中D是共轭给体嵌段,A是共轭受体嵌段,B是一种非共轭柔性桥单元,已合成并初步检查了目标光伏功能。例如,与简单的施主/受主(D / A)共混膜相比,相应的-DBAB-嵌段共聚物膜表现出更好的光致发光(PL)猝灭(从不到70%到超过90%),电导率有偏差(2 -3个数量级更好)和光电导率(增加100%)。这些主要归因于用于电荷载流子产生和传输的空间域改进。在能级域中,当供体/受体边界轨道能量偏移接近两个主要能量成本之和时,光诱导的电荷分离显得最有效:电荷分离重组能量和激子结合能。在电荷重组变得最严重,电荷分离速率常数相对于电荷重组速率常数最大的位置,也可以确定其他供体/受体前沿轨道能量偏移。这些能量偏移值对于设计高效有机太阳能电池至关重要。 (C)2005年Springer Science + Business Media,Inc.

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