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并五苯和苝中单重态激子裂分的机理:从单激子到两个三重态。

Mechanism for singlet fission in pentacene and tetracene: from single exciton to two triplets.

机构信息

Department of Chemistry, University of California, Berkeley, California 94720, USA.

出版信息

J Am Chem Soc. 2011 Dec 14;133(49):19944-52. doi: 10.1021/ja208431r. Epub 2011 Nov 15.

Abstract

Singlet fission (SF) could dramatically increase the efficiency of organic solar cells by producing two triplet excitons from each absorbed photon. While this process has been known for decades, most descriptions have assumed the necessity of a charge-transfer intermediate. This ab initio study characterizes the low-lying excited states in acene molecular crystals in order to describe how SF occurs in a realistic crystal environment. Intermolecular interactions are shown to localize the initially delocalized bright state onto a pair of monomers. From this localized state, nonadiabatic coupling mediated by intermolecular motion between the optically allowed exciton and a dark multi-exciton state facilitates SF without the need for a nearby low-lying charge-transfer intermediate. An estimate of the crossing rate shows that this direct quantum mechanical process occurs in well under 1 ps in pentacene. In tetracene, the dark multi-exciton state is uphill from the lowest singlet excited state, resulting in a dynamic interplay between SF and triplet-triplet annihilation.

摘要

单重态裂变 (SF) 可以通过每个吸收的光子产生两个三重态激子,从而显著提高有机太阳能电池的效率。虽然这个过程已经存在了几十年,但大多数描述都假设需要一个电荷转移中间体。这项从头算研究描述了并五苯分子晶体中的低能激发态,以描述 SF 在实际晶体环境中是如何发生的。分子间相互作用将最初非定域的亮态局域到一对单体上。从这个局域态出发,通过光学允许激子和暗多激子态之间的分子间运动介导的非绝热耦合促进了 SF 的发生,而不需要附近的低能电荷转移中间体。对交叉率的估计表明,在并五苯中,这个直接的量子力学过程在 1 皮秒内发生。在苝中,暗多激子态比最低的单重激发态高,导致 SF 和三重态-三重态湮灭之间的动态相互作用。

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