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Direct observation of the ultrafast electron transfer process in a polymer/fullerene blend

机译:直接观察聚合物/富勒烯共混物中的超快电子转移过程

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摘要

Photoinduced electron transfer in organic molecules is an extensively investigated topic both because of fundamental interest in the photophysics and for applications to artificial photosynthesis. Highly efficient ultrafast electron transfer from photoexcited conjugated polymers to C60 has been reported, the back transfer is heavily hindered, thus providing an intrinsic stabilization mechanism of the photogenerated charges. Although an upper limit for the forward electron transfer time of 1 ps has been reported, its detailed time resolution is still missing and is highly needed to shed light on the photophysics of the charge transfer mechanism. We perform ultrafast experiments on conjugated polymer/C60 blends with sub-10-fs time resolution. We are able to time resolve for the first time the charge transfer process, obtaining a forward electron transfer time constant τct≈45 fs.
机译:由于对光物理的基本兴趣以及在人工光合作用中的应用,有机分子中的光诱导电子转移是一个广泛研究的话题。已经报道了从光激发的共轭聚合物到C60的高效超快速电子转移,严重阻碍了反向转移,因此提供了光生电荷的固有稳定机制。尽管已经报道了1 ps的正向电子转移时间的上限,但仍缺少其详细的时间分辨率,因此非常需要了解电荷转移机理的光物理性质。我们以低于10fs的时间分辨率对共轭聚合物/ C60共混物进行超快实验。我们能够在时间上首次解析电荷转移过程,从而获得正向电子转移时间常数τct≈45fs。

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