卤化物
钙钛矿(结构)
材料科学
不稳定性
同步辐射
开裂
辐射
阴极射线
电子
化学物理
挥发
表面能
电子衍射
固溶体
模数
矿物学
结晶学
劈理(地质)
化学工程
耐久性
同步加速器
复合材料
单晶
光学
晶体结构
衍射
弹性模量
作者
Ruitian Chen,Meilan Xie,Tianyi Lyu,Jincong Pang,Lewei Zeng,Jiahui Zhang,Changjun Cheng,Renfei Feng,Guangda Niu,Jiang Tang,Yu Zou
标识
DOI:10.48550/arxiv.2504.06222
摘要
Organic-inorganic halide perovskites (OIHPs) are promising optoelectronic materials, but their instability under radiation environments restricts their durability and practical applications. Here we employ electron and synchrotron X-ray beams, individually, to investigate the radiation-induced instability of two types of OIHP single crystals (FAPbBr3 and MAPbBr3). Under the electron beam, we observe that 3-point star-style cracks grow on the surface of FAPbBr3, and bricklayer-style cracks are formed on the surface of MAPbBr3. Under the X-ray beam, a new composition without organic components appears in both FAPbBr3 and MAPbBr3. Such cracking and composition changes are attributed to the volatilization of organic components. We propose a volume-strain-based mechanism, in which the energy conversion results from the organic cation loss. Using nanoindentation, we reveal that beam radiations reduce the Youngs modulus and increase the hardness of both OIHPs. This study provides valuable insights into the structural and mechanical stabilities of OIHP single crystals in radiation environments.
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