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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Conformationally controlled ultrafast intersystem crossing in bithiophene systems
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Conformationally controlled ultrafast intersystem crossing in bithiophene systems

机译:双层体系中的构象控制超快交叉线

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摘要

Bithiophenes serve as model systems for larger polythiophenes used in solar cell applications and molecular electronics. We report a study of ultrafast dynamics of two bithiophene systems measured with femtosecond time-resolved photoelectron spectroscopy, and show that their intersystem crossing takes place within the first few picoseconds after excitation, in line with previous studies. We show that the intersystem crossing rate can be explained in terms of arguments based on symmetry of the S-1 minimum energy geometry, which depends on the specific conformation of bithiophene. Furthermore, this work shows that the minor cis-conformer contributes to an even higher intersystem crossing rate than the major trans conformer. The work presented here can provide guiding principles towards the design of solar cell components with even faster formation of long-lived excited states for solar energy harvesting.
机译:白细胞用作太阳能电池应用和分子电子中使用的较大聚噻吩的模型系统。 我们举报了用飞秒时间分辨光电子谱测量的两个二硫代蛋白系统的超快动力学的研究,并表明它们在激发后的前几种皮秒内发生了它们的界面横穿,符合先前的研究。 我们表明,基于S-1最小能量几何形状的对称性,可以在基于S-1最小能量几何形状的对称性方面解释基于争论的基础交叉率,这取决于二硫代菊的特定构象。 此外,这项工作表明,次的CIS-CONFORMER有助于比主要反式塑壳更高的间接系统交叉率。 这里提出的工作可以为太阳能电池组件的设计提供指导原则,甚至更快地形成了用于太阳能收集的长寿兴奋状态。

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