Regulation of Sensitized Phosphorescence in Two-Dimensional Lead Bromine Perovskites by Tuning Excited-State Interactions

Yuming Deng, Xinyue Liu, Lan Jiang, Yongfeng Zhang, Yingchu Dong, Qianyu Liu, Xinyu Liu, Guoquan Gao, Yuanyuan Guo, Gang Tang, Cheng Zhu*, Qi Chen, Tong Zhu*

*此作品的通讯作者

科研成果: 期刊稿件文章同行评审

摘要

Excited-state interactions within the organic layer play a critical role in sensitized phosphorescence of two-dimensional (2D) perovskites. Herein, we regulate excited-state interactions utilizing isomeric organic ligands 1-naphthylmethylamine (1-NMA) and 1-(2-naphthyl)-methanamine (2-NMA). Transient absorption and first-principles calculations are employed to elucidate the mechanisms of triplet energy transfer (TET) and triplet excimer formation. The results indicate that wave function hybridization and tunneling effect at the inorganic/organic interface contribute to rapid (∼20 ps) and highly efficient (>98%) TET, with the triplet excimer being generated in (1-NMA)2PbBr4 at picosecond time-scale. However, triplet excimer is barely observed in (2-NMA)2PbBr4 due to varying ligand stacking modes. Despite rapid TET, the efficiency of sensitized phosphorescence is low (<0.5%), which is ascribed to pronounced nonradiative decay. By mixing isomeric ligands and optimizing respective ratio, a maximum phosphorescence enhancement of 7.6 folds is achieved. This work provides a detailed mechanistic understanding of triplet excimer sensitization and regulation of sensitized phosphorescence.

源语言英语
页(从-至)11162-11169
页数8
期刊Journal of Physical Chemistry Letters
15
44
DOI
出版状态已出版 - 7 11月 2024

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