Optical polarization properties of TPP2MnBr4 perovskite crystal adjusted by the self-trapping state

Author:

Yang Song,Sui Ning,Zhou Qiang1,Wang Kai2,Wu Min2,Xie Renguo1,Meng Xiangdong3,Zhang Hanzhuang,Wang YinghuiORCID

Affiliation:

1. Jilin University

2. Liaocheng University

3. Jilin Normal University

Abstract

Low-dimensional networked organic-inorganic hybrid metal halide crystal has become an emerging hotspot material due to its opportunities and advantages in the development of white-light-emitting diodes. Therefore, its photoluminescence (PL) mechanism is important. Herein, we study the PL behavior of columniform TPP2MnBr4 crystals using multi-spectroscopy. The temperature-dependent PL data show that the PL of the TPP2MnBr4 crystal originates from the recombination of a self-trapping exciton. A polarization-dependent PL test suggests that the self-trapping exciton is anisotropic, which indicates that the distribution of self-trapping states is sensitive to the orientation of the crystal axis. Space-resolved PL spectroscopy shows that the anisotropy of PL gradually weakens along the orientation of the columniform crystal, which has a longer relaxation distance than traditional light-wave-guiding behavior. Thus, anisotropy of PL can exist before it disappears in the crystal. Our results elucidate the PL mechanism of low-dimensional networked organic-inorganic hybrid metal halide crystals and provide a foundation for advanced optical polarization devices based on them.

Funder

Science and Technology Development Planning Project of Jilin Province

National Natural Science Foundation of China

Key State Laboratory of Superhard Materials

Taishan Scholar Project of Shandong Province

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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