材料科学
激子
相变
钙钛矿(结构)
相(物质)
卤化物
异质结
铁学
学位(音乐)
Crystal(编程语言)
凝聚态物理
化学物理
结晶学
量子相变
光电子学
量子临界点
无机化学
化学
物理
有机化学
计算机科学
声学
程序设计语言
作者
Zeyi Liu,Yingying Chen,Junze Li,Wendian Yao,Ting Luo,Dehui Li
标识
DOI:10.1002/adfm.202312074
摘要
Abstract 2D halide perovskites are extensively studied for optoelectronic applications owing to their outstanding excitonic performance. Studies have revealed the coexistence of the high‐temperature phase and low‐temperature phase in 2D perovskite (BA)2PbI4 flakes and the correlation between the degree of phase transition with the thickness; nevertheless, structural phase transition at surface still remains elusive. Here, the use of interlayer excitons in (BA)2PbI4/WSe2 heterojunctions to characterize its structural phase transitions at surface in (BA)2PbI4 is proposed. Two types of interlayer exciton emission caused by the phase transition of (BA)2PbI4 can be observed, which can be attributed to the low‐temperature and high‐temperature phases of (BA)2PbI4, respectively. Importantly, the spatially resolved PL mapping suggests that two phases in the coexisted region distribute rather uniformly and the degree of phase transition at the surface and interior of crystal remains largely the same. The results provide a novel and non‐destructive approach to explore the phase transition of (BA)2PbI4 and offer new route to further regulate its phase transition.
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