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The Application of Electron Backscatter Diffraction on Halide Perovskite Materials

机译:电子反向散射衍射在卤化物钙钛矿材料上的应用

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Abstract Recently, the application of electron backscatter diffraction (EBSD) in halide perovskites has enabled the correlation of the micro‐structural arrangement of polycrystalline grains with other properties (optical, electrical, mechanical, and chemical) in a “pixel‐by‐pixel” approach. Most studies so far have used an ultra‐sensitive electron beam detector that has sensitivity thousands of times higher than a traditional scintillator screen and charge coupled device camera, enabling much lower beam currents. An alternative approach has been the use of low vacuum measurement conditions to avoid charge buildup that leads to damage. This review focuses on introducing the classical EBSD technique to the halide perovskite community, where it has been highly underutilized due to beaminduced damage in these relatively unstable materials. Recent research is used to dispel some common misconceptions about grain boundaries in halide perovskites and highlight what has been learned by comparing and correlating EBSD with other techniques. Additionally, the remaining limitations, development challenges, and future of the EBSD technique for halide perovskites are discussed. Successful utilization of the EBSD technique as a common characterization tool in the halide perovskite community will enable scientists and engineers to develop maps of cross correlated properties, helping to unlock the full potential of this complex material system.
机译:摘要近来,卤化物蠕动衍射(EBSD)在卤化物蠕动衍射(EBSD)的应用使得多晶粒的微结构布置与“像素逐个像素”中的其他性质(光学,电气,机械和化学物质)的相关性相关方法。大多数研究到目前为止已经使用了超敏感的电子束检测器,其具有比传统的闪烁筛网和电荷耦合器件相机高的倍数达到数千次的敏感性,从而实现了更低的梁电流。另一种方法是使用低真空测量条件来避免导致损坏的充电累积。本综述侧重于将古典EBSD技术引入卤化物Perovskite社区,在那里它由于这些相对不稳定的材料中的毛发损坏而被高度未充分利用。最近的研究用于消除关于卤化物Perovskites中的晶界的一些常见误解,并突出通过与其他技术进行比较和与EBSD相关的内容。此外,还讨论了哈利亚德佩罗夫斯基特EBSD技术的其余限制,发展挑战和未来。 EBSD技术的成功利用作为卤化物佩罗夫斯库特社区中的常见表征工具将使科学家和工程师能够开发跨相关性能的地图,有助于解锁该复杂材料系统的全部潜力。

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