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飞秒拉曼显微镜揭示了导致红荧烯单重态裂变中三线态分离的结构动力学。

Femtosecond Raman Microscopy Reveals Structural Dynamics Leading to Triplet Separation in Rubrene Singlet Fission.

作者信息

Bera Kajari, Douglas Christopher J, Frontiera Renee R

机构信息

Department of Chemistry, University of Minnesota , Minneapolis, Minnesota 55455, United States.

出版信息

J Phys Chem Lett. 2017 Dec 7;8(23):5929-5934. doi: 10.1021/acs.jpclett.7b02769. Epub 2017 Nov 22.

Abstract

Singlet fission generates multiple excitons from a single photon, which in theory can result in solar cell efficiencies with values above the Shockley-Queisser limit. Understanding the molecular structural dynamics during singlet fission will help to fabricate efficient organic photovoltaic devices. Here we use femtosecond stimulated Raman spectroscopy to reveal the structural evolution during the triplet separation in rubrene. We observe vibrational signatures of the correlated triplet pair, as well as shifting of the vibrational frequencies of the 1430 and 1542 cm excited state modes, which increase by more than 25 cm in 5 ps. Our results indicate that the correlated pair separation into two individual triplets occurs concurrently with the loss of electron density from the tetracene backbone in rubrene. This study provides new insights into the triplet separation process and proves the utility of structurally sensitive ultrafast vibrational techniques to understand the mechanism of singlet fission.

摘要

单重态裂变可从单个光子产生多个激子,理论上这能使太阳能电池效率超过肖克利-奎塞尔极限。了解单重态裂变过程中的分子结构动力学将有助于制造高效有机光伏器件。在此,我们利用飞秒受激拉曼光谱揭示红荧烯中三重态分离过程中的结构演变。我们观察到相关三重态对的振动特征,以及1430和1542厘米激发态模式的振动频率发生位移,在5皮秒内增加超过25厘米。我们的结果表明,相关对分离成两个单独的三重态与红荧烯中并四苯骨架上电子密度的损失同时发生。这项研究为三重态分离过程提供了新见解,并证明了结构敏感的超快振动技术在理解单重态裂变机制方面的实用性。

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