单重态裂变
内部转换
分子内力
分子间力
能量转换效率
化学
光化学
激发态
产量(工程)
化学物理
单重态
光谱学
激发
材料科学
光电子学
原子物理学
分子
有机化学
物理
量子力学
天文
冶金
谱线
电气工程
工程类
作者
Long Wang,Shuming Bai,Yishi Wu,Yan Liu,Jiannian Yao,Hongbing Fu
标识
DOI:10.1002/anie.201912202
摘要
Singlet fission (SF) holds the potential to boost the maximum power conversion efficiency of photovoltaic devices. Internal conversion (IC) has been considered as one of the major competitive deactivation pathways to transform excitation energy into heat. Now, using time-resolved spectroscopy and theoretical calculation, it is demonstrated that, instead of a conventional IC pathway, an unexpected intramolecular singlet fission (iSF) process is responsible for excited state deactivation in isoindigo derivatives. The 1 TT state could form at ultrafast rate and nearly quantitatively in solution. In solid films, the slipped stacked intermolecular packing of a thiophene-functionalized derivative leads to efficient triplet pair separation, giving rise to an overall triplet yield of 181 %. This work not only enriches the pool of iSF-capable materials, but also contributes to a better understanding of the iSF mechanism, which could be relevant for designing new SF sensitizers.
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