钙钛矿(结构)
卤化物
光电效应
材料科学
背景(考古学)
光伏系统
太阳能电池
光电子学
超晶格
光伏
电介质
纳米技术
工程物理
化学
物理
无机化学
结晶学
工程类
电气工程
古生物学
生物
作者
Susmita Bhattacharya,Goutam Chandra,P. Predeep
标识
DOI:10.3389/fnano.2021.657948
摘要
Recent observations have demonstrated that the photoelectric conversion properties of perovskite materials are intimately related to the presence of superlattice structures and other unusual nanoscale features in them. The low-dimensional or mixed-dimensional halide perovskite families are found to be more efficient materials for device application than three-dimensional halide perovskites. The emergence of perovskite solar cells has revolutionized the solar cell industry because of their flexible architecture and rapidly increased efficiency. Tuning the dielectric constant and charge separation are the main objectives in designing a photovoltaic device that can be explored using the two-dimensional perovskite family. Thus, revisiting the fundamental properties of perovskite crystals could reveal further possibilities for recognizing these improvements toward device functionality. In this context, this review discusses the material properties of two-dimensional halide perovskites and related optoelectronic devices, aiming particularly for solar cell applications.
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