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The fate of electron–hole pairs in polymer:fullerene blends for organic photovoltaics

机译:聚合物:富勒烯共混物中用于电子光伏的电子-空穴对的命运

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摘要

There has been long-standing debate on how free charges are generated in donor: acceptor blends that are used in organic solar cells, and which are generally comprised of a complex phase morphology, where intermixed and neat phases of the donor and acceptor material co-exist. Here we resolve this question, basing our conclusions on Stark effect spectroscopy data obtained in the absence and presence of externally applied electric fields. Reconciling opposing views found in literature, we unambiguously demonstrate that the fate of photogenerated electron-hole pairs-whether they will dissociate to free charges or geminately recombine-is determined at ultrafast times, despite the fact that their actual spatial separation can be much slower. Our insights are important to further develop rational approaches towards material design and processing of organic solar cells, assisting to realize their purported promise as lead-free, third-generation energy technology that can reach efficiencies over 10%.
机译:关于供体中如何产生自由电荷一直存在着长期争论,这些供体是有机太阳能电池中使用的受体共混物,通常由复杂的相形态组成,供体和受体材料共混和纯净。存在。在这里,我们根据在没有外部施加电场的情况下获得的斯塔克效应光谱数据得出的结论来解决这个问题。调和文献中的相反观点,我们明确地证明,光生电子-空穴对的命运-它们将解离成自由电荷还是重新结合-是在超快的时间内确定的,尽管事实上它们的实际空间间隔要慢得多。我们的见解对于进一步开发合理的方法来进行有机太阳能电池的材料设计和处理非常重要,有助于实现其所谓的无铅第三代能源技术的承诺,该技术可达到10%以上的效率。

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