钙钛矿(结构)
光电效应
原子单位
分解
材料科学
化学物理
透射电子显微镜
电子
降级(电信)
带隙
纳米技术
结晶学
化学
光电子学
物理
计算机科学
电信
量子力学
有机化学
作者
Shulin Chen,Changwei Wu,Bo Han,Zhetong Liu,Mi Zhou,Weizhong Hao,Jinjin Zhao,Xiao Wang,Qing Zhang,Kaihui Liu,Junlei Qi,Jian Cao,Jicai Feng,Dapeng Yu,Jiangyu Li,Peng Gao
标识
DOI:10.1038/s41467-021-25832-9
摘要
Understanding the atomic structure and structural instability of organic-inorganic hybrid perovskites is the key to appreciate their remarkable photoelectric properties and failure mechanism. Here, using low-dose imaging technique by direct-detection electron-counting camera in transmission electron microscope, we investigate the atomic structure and decomposition pathway of CH3NH3PbI3 (MAPbI3) at the atomic scale. We successfully image the atomic structure of perovskite in real space under ultra-low electron dose condition, and observe a two-step decomposition process, i.e. initial loss of MA followed by the collapse of perovskite structure into 6H-PbI2 with their critical threshold dose also determined. Interestingly, an intermediate phase (MA0.5PbI3) with locally ordered vacancies can robustly exist before perovskite collapses, enlightening strategies for prevention and recovery of perovskite structure during degradation. Associated with structure evolution, the bandgap gradually increases from ~1.6 eV to ~2.1 eV, and it is found that both C-N and N-H bonds can be destroyed under irradiation, releasing NH3 and leaving hydrocarbons. These findings enhance our understanding of the photoelectric properties and failure mechanism of MAPbI3, providing potential strategy into material optimization.
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