材料科学
成核
钙钛矿(结构)
纳米技术
小型化
化学物理
格子(音乐)
化学工程
声学
物理
工程类
有机化学
化学
作者
Linyi Li,Yantao Yu,Peng Li,Jinxin Liu,Lihan Liang,Luyang Wang,Yu Ding,Xiaocang Han,Jiamin Ji,Shengli Chen,Dehui Li,Pan Liu,Shunping Zhang,Mengqi Zeng,Lei Fu
标识
DOI:10.1002/adma.202108396
摘要
Perovskites have engaged significant attention owing to rich species and remarkable physical properties as well as optoelectronic applications. Compared to bulk counterparts, ultrathin perovskites exhibit more available compositions due to the breaking of bulk lattice limitation. Coupled with crystal lattice relaxation and quantum confinement, infinite intriguing properties of ultrathin perovskites deserve to be explored. Developing ultrathin perovskites with alterable composition and structure is a necessity to fully explore this versatile family. Herein, a universal strategy is conceived via constructing oriented solvent microenvironment induced by the interfacial electric field originated from the charge separation between solid and liquid phases, which is conducive to controlling the precursor distribution and makes crystals preferentially nucleate and grow in the preferentially lateral mode. From layered to nonlayered, organic to inorganic, and toxic to low-toxic lead-free perovskite, a full-range synthesis is achieved of ultrathin perovskites. This work opens up opportunities both for ultrathin perovskite exploration through compositional engineering and for device miniaturization in energy conversion applications.
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