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Electron-Beam-Related Studies of Halide Perovskites: Challenges and Opportunities

机译:卤化物佩洛夫斯基铅的电子束相关研究:挑战和机遇

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摘要

Abstract Electron beam microscopy and related characterization techniques play an important role in revealing the microstructural, morphological, physical, and chemical information of halide perovskites and their impact on associated optoelectronic devices. However, electron beam irradiation usually causes damage to these beam‐sensitive materials, negatively impacting their device performance, and complicating this interpretation. In this article, the electron microscopy and spectroscopy techniques are reviewed that are crucial for the understanding of the crystallization and microstructure of halide perovskites. In addition, special attention is paid to assessing and mitigating the electron beam‐induced damage caused by these techniques. Since the halide perovskites are fragile, a protocol involving delicate control of both electron beam dose and dose rate, coupled with careful data analysis, is key to enable the acquisition of reliable structural and compositional information such as atomic‐resolution images, chemical elemental mapping and electron diffraction patterns. Limiting the electron beam dose is critical parameter enabling the characterization of various halide perovskites. Novel methods to unveil the mechanisms of device operation, including charge carrier generation, diffusion, and extraction are presented in scanning electron microscopy studies combined with electron‐beam‐induced current and cathodoluminescence mapping. Future opportunities for electron‐beam‐related characterizations of halide perovskites are also discussed.
机译:摘要电子束显微镜及相关表征技术在揭示卤化物钙化铅的微观结构,形态学,物理和化学信息及其对相关光电器件的影响方面发挥着重要作用。然而,电子束照射通常会对这些光束敏感材料造成损坏,对其装置性能产生负面影响,并使这种解释复杂化。在本文中,综述了电子显微镜和光谱技术对于了解卤化卤素的结晶和微观结构至关重要。此外,特别注意评估和减轻由这些技术引起的电子束诱导的损伤。由于卤化钙酸盐是脆弱的,涉及对电子束剂量和剂量率的精细控制的协议,与仔细数据分析相结合,是能够获取可靠的结构和组成信息,例如原子分辨率图像,化学元素映射等键。电子衍射图案。限制电子束剂量是关键参数,其能够表征各种卤化物钙锌矿。扫描电子显微镜研究中介绍了揭示装置操作机制的新方法,包括电荷载体产生,扩散和提取,与电子射线引起的电流和阴极发光测绘。还讨论了未来的电子束相关表征的卤化物钙佩斯的机会。

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