Spin-configuration of emission states in zero-dimensional metal halides

Author:

Kuang Zhiyuan1,Huang Xinyu1,Wang Xing1,Wang Chengcheng1,Wang Xinrui1,Huang Wei12,Peng Qiming1,Wang Jianpu13

Affiliation:

1. Key Laboratory of Flexible Electronics (KLOFE), Institute of Advanced Materials (IAM) & School of Flexible Electronics, Nanjing Tech University , Nanjing 211816 , China

2. Strait Laboratory of Flexible Electronics (SLoFE) , Fuzhou 350117 , China

3. School of Materials Science and Engineering, School of Microelectronics and Control Engineering, Changzhou University , Changzhou 213164 , China

Abstract

ABSTRACT Understanding the spin-configuration of excited states in a luminescent material is essential for tailoring its properties for many applications such as light-emitting diodes and spin-optoelectronic devices. Zero-dimensional organic-inorganic metal halide (0D-OIMH) materials have demonstrated remarkable potential in diverse applications owing to their captivating optoelectronic characteristics. However, the electronic structure and spin-configuration of the frequently observed dual-peak emission in these materials remains a subject of intensive debate. In this study, we employ low-temperature magneto-optical measurements to investigate the excited state structure of a representative 0D-OIMH, namely (Bmpip)2SnBr4. The spin-configurations of the dark and bright states are clearly elucidated by measuring the magneto-polarization of the emissions. Our results reveal that the high-energy peak arises from bright excited states within a higher energy band, whilst the low-energy peak originates from a combination of triplet-bright states and singlet-dark states. These findings provide an unambiguous understanding of the exciton structures of the distinctive 0D-OIMHs.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Jiangsu Provincial Department of Science and Technology

Synergetic Innovation Center for Organic Electronics and Information Displays

Publisher

Oxford University Press (OUP)

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