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Nanoscale Structure of Solar Cells Based on Pure Conjugated Polymer Blends

机译:基于纯共轭聚合物共混物的太阳能电池纳米结构

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This paper gives an overview of the status of photovoltaic devices based on blends of semiconducting polymers. The polymer blends form the bulk heterojunction in these photovoltaic devices. The fundamental mechanisms governing the performance of these devices are discussed as well as the specificities of these all-polymer solar cells. The morphology of the polymer blend layer is expected to influence the device performance of these bulk heterojunctions. An overview is presented of factors that influence the morphology of the active layer of polymer blend photovoltaic devices together with a summary of tools available to study the structure of this layer. An advanced electron microscopy technique is applied to study the morphology of polymer blends of MDMO-PPV and PCNEPV with differing molecular weights. It is shown that the molecular weight of the polymer influences the typical domain size from approx 200 nm down to less than 5 nm in these bulk heterojunction PV devices. No strong relation is observed between the typical length scale of the phase separated domains and the measured external quantum efficiency, indicating that the phases are intermixed.
机译:本文概述了基于半导体聚合物共混物的光伏器件的状态。聚合物共混物在这些光伏器件中形成本体异质结。讨论了控制这些设备性能的基本机制以及这些全聚合物太阳能电池的特性。预期聚合物共混物层的形态会影响这些本体异质结的器件性能。概述了影响聚合物共混光伏器件活性层形态的因素,并提供了可用于研究该层结构的工具汇总。应用先进的电子显微镜技术研究不同分子量的MDMO-PPV和PCNEPV的聚合物共混物的形态。结果表明,在这些本体异质结PV器件中,聚合物的分子量影响典型的畴尺寸,范围从大约200 nm减小到小于5 nm。在相分离域的典型长度尺度与测得的外部量子效率之间没有观察到强烈的关系,表明相是混合的。

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