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Theoretical Studies of Singlet Fission: Searching for Materials and Exploring Mechanisms

机译:单线裂变的理论研究:寻找材料和探索机制

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Abstract In this Review article, a survey is given for theoretical studies in the subject of singlet fission. Singlet fission converts one singlet exciton to two triplet excitons. With the doubled number of excitons and the longer lifetime of the triplets, singlet fission provides an avenue to improve the photoelectric conversion efficiency in organic photovoltaic devices. It has been a subject of intense research in the past decade. Theoretical studies play an essential role in understanding singlet fission. This article presents a Review of theoretical studies in singlet fission since 2006, the year when the research interest in this subject was reignited. Both electronic structure and dynamics studies are covered. Electronic structure studies provide guidelines for designing singlet fission chromophores and insights into the couplings between single‐ and multi‐excitonic states. The latter provides fundamental knowledge for engineering interchromophore conformations to enhance the fission efficiency. Dynamics studies reveal the importance of vibronic couplings in singlet fission.
机译:摘要在本综述文章中,对单线时裂变的理论研究提供了调查。单次裂变将一个单态激子转化为两个三重态激子。随着激子数量的一倍和三联体的寿命更长,单线裂变提供了一种途径,以提高有机光伏器件中的光电转换效率。在过去十年中,它是一个激烈的研究主题。理论研究在了解单线裂变中起着重要作用。本文提出了自2006年自2006年自2006年裂变的理论研究述评审查,这一主题的研究兴趣是重大的。覆盖了电子结构和动力学研究。电子结构研究提供了设计单次裂变发色团的指导和洞察单和多兴力态之间的联轴器。后者为工程间运动型化综合征提供了基础知识,以提高裂变效率。动力学研究揭示了偏裂裂变中的颤音耦合的重要性。

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