材料科学
钙钛矿(结构)
卤化物
纳米尺度
纳米技术
灵活性(工程)
纳米探针
光电子学
无机化学
纳米颗粒
结晶学
化学
数学
统计
作者
Yanqi Luo,Sigalit Aharon,Michael Stückelberger,Ernesto Magaña,Barry Lai,Mariana I. Bertoni,Lioz Etgar,David P. Fenning
标识
DOI:10.1002/adfm.201706995
摘要
Abstract Hybrid organometal halide perovskites are known for their excellent optoelectronic functionality as well as their wide‐ranging chemical flexibility. The composition of hybrid perovskite devices has trended toward increasing complexity as fine‐tuned properties are pursued, including multielement mixing on the constituents A and B and halide sites. However, this tunability presents potential challenges for charge extraction in functional devices. Poor consistency and repeatability between devices may arise due to variations in composition and microstructure. Within a single device, spatial heterogeneity in composition and phase segregation may limit the device from achieving its performance potential. This review details how the nanoscale elemental distribution and charge collection in hybrid perovskite materials evolve as chemical complexity increases, highlighting recent results using nondestructive operando synchrotron‐based X‐ray nanoprobe techniques. The results reveal a strong link between local chemistry and charge collection that must be controlled to develop robust, high‐performance hybrid perovskite materials for optoelectronic devices.
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