材料科学
卤化物
锡
钙钛矿(结构)
发光
激子
化学物理
光致发光
作者
Tianju Zhang,Chun Zhou,Xuezhen Feng,Ningning Dong,Hong Chen,Xianfeng Chen,Lijun Zhang,Jia Lin,Jun Wang
标识
DOI:10.1038/s41467-021-27663-0
摘要
Abstract Two-dimensional (2D) Sn-based perovskites are a kind of non-toxic environment-friendly luminescent material. However, the research on the luminescence mechanism of this type of perovskite is still very controversial, which greatly limits the further improvement and application of the luminescence performance. At present, the focus of controversy is defects and phonon scattering rates. In this work, we combine the organic cation control engineering with temperature-dependent transient absorption spectroscopy to systematically study the interband exciton relaxation pathways in layered A 2 SnI 4 (A = PEA + , BA + , HA + , and OA + ) structures. It is revealed that exciton-phonon scattering and exciton-defect scattering have different effects on exciton relaxation. Our study further confirms that the deformation potential scattering by charged defects, not by the non-polar optical phonons, dominates the excitons interband relaxation, which is largely different from the Pb-based perovskites. These results enhance the understanding of the origin of the non-radiative pathway in Sn-based perovskite materials.
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