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New insight into the ultra-long lifetime of excitons in organic-inorganic perovskite: Reverse intersystem crossing
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作者 guanghao meng Yantao Shi +4 位作者 Xiangyuan Wang Wei Wang Shufeng Wang Min Ji Ce Hao 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2018年第5期1496-1500,共5页
Recently, an effective exciton diffusion length L exceeding 100μm has been reported for organic- inorganic halide perovskites owing to both the high mobility and ultra-long lifetime of the excitons; however, the orig... Recently, an effective exciton diffusion length L exceeding 100μm has been reported for organic- inorganic halide perovskites owing to both the high mobility and ultra-long lifetime of the excitons; however, the origin of ultra-long L is still unclear in nature. In some photoelectric materials, reverse intersystem crossing (RISC) from the triplet to the singlet state can enhance the quantum yield of pho- toluminescence greatly. In this study, our theoretical investigation indicated that the energy difference △E_st between the singlet state and the triplet state of CH_3NH_3Pbl_3 was less than 0.1 eV, which represents one crucial prerequisite for the occurrence of RISC. Meanwhile, the experimental results showed that the photoluminescence lifetime increased with the increasing temperature, a typical feature of RISC. Based on this study, we put forward the hypothesis that the ultra-long lifetime of excitons in organic-inorganic halide perovskite might be caused by the RISC process. This may provide a new insight into the important photophysical properties of such novel photovoltaic materials. 展开更多
关键词 Inorganic-organic halide perovskite PHOTOPHYSICS Photoluminescence Reverse intersystem crossing Ultra-long lifetime
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