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Real-time observation of intersystem crossing induced by charge recombination during bimolecular electron transfer reactions

机译:双分子电子转移反应期间电荷重组诱导的基于系统交叉的实时观察

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摘要

Real-time probing of intersystem crossing (ISC) and triplet-state formation after photoinduced electron transfer (ET) is a particularly challenging task that can be achieved by time-resolved spectroscopy with broadband capability. Here, we examine the mechanism of charge separation (CS), charge recombination (CR) and ISC of bimolecular photoinduced electron transfer (PET) between poly[(9,9-di(3,3'-N,N'-trimethyl-ammonium) propyl fluorenyl-2,7-diyl)-alt-co-(9,9-dioctyl-fluorenyl-2,7-diyl)] diiodide salt (PFN) and dicyanobenzene (DCB) using time-resolved spectroscopy. PET from PFN to DCB is confirmed by monitoring the transient absorption (TA) and infrared spectroscopic signatures for the radical ion pair (DCB-center dot-PFN+center dot). In addition, our time-resolved results clearly demonstrate that CS takes place within picoseconds followed by CR within nanoseconds. The ns-TA data exhibit the clear spectroscopic signature of PFN triplet-triplet absorption, induced by the CR of the radical ion pairs (DCB-center dot-PFN+center dot). As a result, the triplet state of PFN (SPEW) forms and subsequently, the ground singlet state is replenished within microseconds. (C) 2016 Published by Elsevier Ltd.
机译:在光导电子传输(ET)之后的基于系统交叉(ISC)和三重态形成的实时探测是一种特别具有挑战性的任务,可以通过具有宽带能力的时间分辨光谱来实现。在这里,我们检查聚微分光学诱导的电子转移(PET)的电荷分离(Cs),电荷重组(Cr)和ISC的机理[(9,9-二(3,3'-N,N'-三甲基 - 铵)丙基芴基-2,7-二基) - 使用时间分辨光谱法的二碘盐(PFN)和二氰基苯(DCB)。通过监测自由基离子对(DCB中心点PFN +中心点)的瞬态吸收(TA)和红外光谱签名来确认来自PFN至DCB的PET。此外,我们的解决结果清楚地表明CS在PicoSeconds之后发生在纳秒内的Cr。 NS-TA数据表现出PFN三重态 - 三重态吸收的透明光谱特征,由自由基离子对(DCB中心DOT-PFN +中心点)诱导。结果,PFN(SPEW)形式的三重态状态和随后,在微秒内补充地面单态状态。 (c)2016由elestvier有限公司出版

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