钙钛矿单晶:物理性质及光电应用

Chen Li, Haoxuan Sun, S. Gan, Daying Dou, L. Li
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引用次数: 0

摘要

单晶是卤化物钙钛矿中最有利的晶体形态。由于其自由晶界、长程有序结构和高取向等固有的结构优势,使其具有比多晶薄膜和微晶更好的光学和电学性能。单晶钙钛矿材料理论上可以使光电器件具有更高的性能和更强的稳定性。本文对钙钛矿单晶的内在物理性质进行了分析。综述了单晶光电器件的最新进展,揭示了单晶光电器件在不同应用条件下的设计原理。它为剩余的挑战提供了潜在的解决方案,并有望加速钙钛矿基光电器件的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Perovskite single crystals: physical properties and optoelectronic applications
Single crystal is the most advantageous of the crystalline states of halide perovskites. It displays better optical and electrical capabilities than polycrystalline films and microcrystals due to their inherent structural advantages, such as free grain boundaries, long-range ordered structure, and high orientation. Single-crystal perovskite materials can theoretically enable optoelectronic devices with higher performance and stronger stability. In this review, the intrinsic physical properties of perovskite single crystals are analyzed. The most recent advances in single-crystal optoelectronic devices are reviewed, and the design principles of the devices under different application conditions are revealed. It provides potential solutions for remaining challenges, and it is expected to accelerate the development of perovskite based optoelectronic devices.
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CiteScore
7.40
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