卤化物
钙钛矿(结构)
原子单位
透视图(图形)
材料科学
比例(比率)
分子
纳米技术
工程物理
物理
化学
无机化学
结晶学
量子力学
计算机科学
人工智能
作者
Xiaoyu Wang,Xue Wang,Xinjiang Wang,Muchen Li,Hanming Li,Yuhao Fu,Lijun Zhang
摘要
ABSTRACT Despite significant advancements in the study of metal halide perovskites worldwide, the large-scale industrialization of related optoelectronic devices faces ongoing challenges related to efficiency, long-term stability, and environmental and human toxicity. Self-assembled molecules (SAMs) have recently emerged as crucial strategies for enhancing device performance and stability, particularly by mitigating interface-related challenges. This review provides a comprehensive examination of the multifaceted roles of SAMs in enhancing the performance and stability of perovskite optoelectronic devices. We begin by introducing the evolution of SAMs, their unique physicochemical properties and implemented applications in optoelectronic devices. Subsequently, we delve into the diverse beneficial effects of SAMs in perovskite devices and elucidate the underlying atomic-scale mechanisms responsible for these performance enhancements. Finally, we critically analyze the current challenges associated with the rational design and implementation of SAMs in perovskite devices and conclude by outlining promising future research directions.
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