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Local Crystal Misorientation Influences Non-radiative Recombination in Halide Perovskites

机译:本地晶体取向错误影响卤化物钙钛矿中的非辐射复合。

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We use ultrasensitive electron backscatter diffraction (EBSD) to map the local crystal orientations, grains, and grain boundaries in CH_3NH_3Pbl_3 (MAPI) perov-skite thin films. Although the true grain structure is broadly consistent with the morphology visible in scanning electron microscopy (SEM), the inverse pole figure maps taken with EBSD reveal grain structure and internal misorientation that is otherwise hidden. Local crystal misorientation is consistent with the presence of local strain, which varies from one grain to the next. We acquire co-aligned confocal optical photoluminescence (PL) microscopy images on the same MAPI samples used for EBSD. We correlate optical and EBSD data, showing that PL is anticorrelated with the local grain orientation spread, suggesting that grains with higher degrees of crystalline orientational heterogeneity (local strain) exhibit more non-radiative recombination. We find that larger grains tend to have larger grain orientation spread, consistent with higher degrees of strain and non-radiative recombination.
机译:我们使用超灵敏电子背散射衍射(EBSD)来绘制CH_3NH_3Pbl_3(MAPI)钙钛矿-skite薄膜中的局部晶体取向,晶粒和晶界。尽管真实的晶粒结构与扫描电子显微镜(SEM)中可见的形貌大致相符,但用EBSD拍摄的反极图图显示了晶粒结构和内部取向错误,否则它们会被隐藏。局部晶体取向错误与局部应变的存在是一致的,局部应变在一个晶粒到另一个晶粒之间变化。我们在用于EBSD的相同MAPI样品上获取共对准共焦光学光致发光(PL)显微镜图像。我们将光学和EBSD数据相关联,表明PL与局部晶粒取向扩散呈反相关,这表明具有较高晶体取向异质性(局部应变)的晶粒表现出更多的非辐射重组。我们发现,较大的晶粒往往具有较大的晶粒取向扩展,这与较高的应变程度和非辐射重组相一致。

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