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Using steric hindrance to manipulate and stabilize metal halide perovskites for optoelectronics

机译:使用空间障碍来操纵和稳定金属卤化物钙矿的光电子

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摘要

The chemical instability of metal halide perovskite materials can be ascribed to their unique properties of softness, in which the chemical bonding between metal halide octahedral frameworks and cations is the weak ionic and hydrogen bonding as in most perovskite structures. Therefore, various strategies have been developed to stabilize the cations and metal halide frameworks, which include incorporating additives, developing two-dimensional perovskites and perovskite nanocrystals, etc. Recently, the important role of utilizing steric hindrance for stabilizing and passivating perovskites has been demonstrated. In this perspective, we summarize the applications of steric hindrance in manipulating and stabilizing perovskites. We will also discuss how steric hindrance influences the fundamental kinetics of perovskite crystallization and film formation processes. The similarities and differences of the steric hindrance between perovskite solar cells and perovskite light emission diodes are also discussed. In all, utilizing steric hindrance is a promising strategy to manipulate and stabilize metal halide perovskites for optoelectronics.
机译:的金属卤化物钙钛矿材料的化学不稳定性可以归因于他们的独特的柔软性的特性,其中间金属卤化物八面体的框架和阳离子化学结合是弱离子键和氢键,因为在大多数的钙钛矿结构。因此,各种策略已经被开发,以稳定阳离子和金属卤化物的框架,其包括掺入添加剂,显影二维钙钛矿和钙钛矿纳米晶体等。最近,利用用于稳定和钝化钙钛矿空间位阻的重要作用已经得到证明。在这方面,我们总结空间位阻的应用程序中操纵和稳定钙钛矿。我们还将讨论空间位阻如何影响钙钛矿结晶和成膜过程的基本动力学。的相似性和钙钛矿太阳能电池和钙钛矿的发光二极管之间的空间位阻的差异进行了讨论。总之,利用空间位阻是操纵和稳定金属卤化物钙钛矿用于光电子有希望的策略。

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