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二维卤化物双钙钛矿(BA)AgBiBr(BA = CH(CH)NH)的压力诱导发射(PIE)和相变

Pressure-Induced Emission (PIE) and Phase Transition of a Two-dimensional Halide Double Perovskite (BA) AgBiBr (BA=CH (CH ) NH ).

作者信息

Fang Yuanyuan, Zhang Long, Wu Lianwei, Yan Jiejuan, Lin Yu, Wang Kai, Mao Wendy L, Zou Bo

机构信息

State Key Laboratory of Superhard Materials, College of Physics, Jilin University, Changchun, 130012, China.

Department of Geological Sciences, Stanford University, Stanford, CA, 94305, USA.

出版信息

Angew Chem Int Ed Engl. 2019 Oct 21;58(43):15249-15253. doi: 10.1002/anie.201906311. Epub 2019 Sep 11.

Abstract

Two-dimensional (2D) halide perovskites have attracted significant attention due to their compositional flexibility and electronic diversity. Understanding the structure-property relationships in 2D double perovskites is essential for their development for optoelectronic applications. In this work, we observed the emergence of pressure-induced emission (PIE) at 2.5 GPa with a broad emission band and large Stokes shift from initially nonfluorescent (BA) AgBiBr (BA=CH (CH ) NH ). The emission intensity increased significantly upon further compression up to 8.2 GPa. Moreover, the band gap narrowed from the starting 2.61 eV to 2.19 eV at 25.0 GPa accompanied by a color change from light yellow to dark yellow. Analysis of combined in situ high-pressure photoluminescence, absorption, and angle-dispersive X-ray diffraction data indicates that the observed PIE can be attributed to the emission from self-trapped excitons. This coincides with [AgBr ] and [BiBr ] inter-octahedral tilting which cause a structural phase transition. High-pressure study on (BA) AgBiBr sheds light on the relationship between the structure and optical properties that may improve the material's potential applications in the fields of pressure sensing, information storage and trademark security.

摘要

二维(2D)卤化物钙钛矿因其组成的灵活性和电子多样性而备受关注。理解二维双钙钛矿的结构-性能关系对于其在光电子应用中的发展至关重要。在这项工作中,我们观察到在2.5 GPa压力下,初始无荧光的(BA)AgBiBr(BA = CH₃(CH₂)₃NH₂)出现了压力诱导发射(PIE),具有宽发射带和大斯托克斯位移。在进一步压缩至8.2 GPa时,发射强度显著增加。此外,在25.0 GPa时,带隙从起始的2.61 eV缩小到2.19 eV,同时颜色从浅黄色变为深黄色。原位高压光致发光、吸收和角分辨X射线衍射数据的综合分析表明,观察到的PIE可归因于自陷激子的发射。这与[AgBr₆]和[BiBr₆]八面体间的倾斜一致,从而导致结构相变。对(BA)AgBiBr的高压研究揭示了结构与光学性质之间的关系,这可能会改善该材料在压力传感、信息存储和商标安全领域的潜在应用。

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