| Literature DB >> 32302138 |
Leixin Xiao1, Zhiwei Wang1, Chunfeng Zhang1, Xiaoyu Xie2, Haibo Ma2, Qian Peng3, Zhongfu An4, Xiaoyong Wang1, Zhigang Shuai5, Min Xiao1,6.
Abstract
Organic guest/host systems with long persistent luminescence benefiting from the formation of a long-lived charge-separated state have recently been demonstrated. However, the photogeneration mechanism of such key charge-separated states remains elusive. Here, we report the identification of intermediate triplet states with mixed local excitation and charge-transfer character that connect the initial photoexcited singlet states and the long-lived charge-separated states. Using time-resolved optical spectroscopy, we observe the intersystem crossing from photoexcited singlet charge-transfer states to triplet intermediate states on a time scale of ∼52 ns. Temperature-dependent measurements reveal that the long-lived triplet intermediate states ensure a relatively high efficiency of diffusion-driven charge separation to form the charge-separated state responsible for LPL emission. The findings in this work provide a rationale for the development of new LPL materials that may also improve our understanding of the mechanism of photon-to-charge conversion in many organic optoelectronic devices.Year: 2020 PMID: 32302138 DOI: 10.1021/acs.jpclett.0c00880
Source DB: PubMed Journal: J Phys Chem Lett ISSN: 1948-7185 Impact factor: 6.475