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首页> 外文期刊>Journal of physical chemistry letters >Enhanced Organo-Metal Halide Perovskite Photoluminescence from Nanosized Defect-Free Crystallites and Emitting Sites
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Enhanced Organo-Metal Halide Perovskite Photoluminescence from Nanosized Defect-Free Crystallites and Emitting Sites

机译:纳米级无缺陷微晶和发光部位增强的有机金属卤化物钙钛矿光致发光

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摘要

Photoluminescence (PL) of organo-metal halide perovskite semiconductors can be enhanced by several orders of magnitude by exposure to visible light. We applied PL microscopy and super-resolution optical imaging to investigate this phenomenon with spatial resolution better than 10 nm using films of CH3NH3PbI3 prepared by the equimolar solution-deposition method, resulting in crystals of different sizes. We found that PL of similar to 100 nm crystals enhances much faster than that of larger, micrometer-sized ones. This crystal-size dependence of the photochemical light passivation of charge traps responsible for PL quenching allowed us to conclude that traps are present in the entire crystal volume rather than at the surface only. Because of this effect, "dark" micrometer-sized perovskite crystals can be converted into highly luminescent smaller ones just by mechanical grinding. Super-resolution optical imaging shows spatial inhomogeneity of the PL intensity within perovskite crystals and the existence of <100 nm-sized localized emitting sites. The possible origin of these sites is discussed.
机译:通过暴露于可见光,有机金属卤化物钙钛矿半导体的光致发光(PL)可以提高几个数量级。我们使用等摩尔溶液沉积法制备的CH3NH3PbI3薄膜应用PL显微镜和超分辨率光学成像技术研究了这种现象,其空间分辨率优于10 nm,从而产生了不同大小的晶体。我们发现,类似于100 nm晶体的PL增强速度要快于较大的微米级晶体。负责PL猝灭的电荷陷阱的光化学钝化与晶体大小有关,这使我们可以得出结论:陷阱存在于整个晶体体积中,而不仅存在于表面。由于这种作用,仅通过机械研磨就可以将“深色”的微米级钙钛矿晶体转变为发光度高的较小晶体。超分辨率光学成像显示钙钛矿晶体内PL强度在空间上不均匀,并且存在<100 nm大小的局部发射点。讨论了这些站点的可能来源。

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