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首页> 外文期刊>Journal of physical chemistry letters >Local Rearrangement of the Iodide Defect Structure Determines the Phase Segregation Effect in Mixed-Halide Perovskites
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Local Rearrangement of the Iodide Defect Structure Determines the Phase Segregation Effect in Mixed-Halide Perovskites

机译:碘化物缺陷结构的局部重排决定了混合卤化物钙钛矿中的相分离效应

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摘要

Mixed-halide perovskites represent a particularly relevant case within the family of lead-halide perovskites. Beyond their technological relevance for a variety of optoelectronic devices, photoinduced structural changes characteristic of this type of material lead to extreme photophysical changes that are currently the subject of intense debate. Herein we show that the conspicuous photoinduced phase segregation characteristic of these materials is primarily the result of the local and metastable rearrangement of the iodide sublattice. A local photophysical study comprising spectrally resolved laser scanning confocal microscopy is employed to find a correlation between the defect density and the dynamics of photoinduced changes, which extend far from the illuminated region. We observe that iodide-rich regions evolve much faster from highly defective regions. Also, by altering the material composition, we find evidence for the interplay between the iodide-related defect distribution and the intra- and interdomain migration dynamics giving rise to the complexity of this process.
机译:混合卤化物钙胞质代表了铅卤化物普罗脂系列内的特别相关的病例。除了对各种光电器件的技术相关性之外,光突出的结构变化这种类型的材料的特征导致目前是激烈辩论主体的极端光物理变化。在此,我们表明,这些材料的显着光致相对相的相偏析特征主要是碘化物子分子的局部和亚稳定性重排的结果。包括光谱分辨激光扫描共聚焦显微镜的局部光物理研究用于在远离照明区域延伸的缺陷密度和光诱导变化的动态之间的相关性。我们观察到富含碘化物的地区从高度缺陷的地区发展得多。此外,通过改变材料组成,我们发现碘化物相关缺陷分布与跨域迁移动态之间的相互作用的证据,从而产生了这种过程的复杂性。

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