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超薄钙钛矿单晶的普遍生长

The Universal Growth of Ultrathin Perovskite Single Crystals.

作者信息

Li Linyi, Yu Yantao, Li Peng, Liu Jinxin, Liang Lihan, Wang Luyang, Ding Yu, Han Xiaocang, Ji Jiamin, Chen Shengli, Li Dehui, Liu Pan, Zhang Shunping, Zeng Mengqi, Fu Lei

机构信息

College of Chemistry and Molecular Sciences, Wuhan University, Wuhan, 430072, China.

School of Optical and Electronic Information and Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan, 430074, China.

出版信息

Adv Mater. 2022 May;34(20):e2108396. doi: 10.1002/adma.202108396. Epub 2022 Apr 11.

Abstract

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.

摘要

钙钛矿因其丰富的种类、卓越的物理性质以及光电应用而备受关注。与块状钙钛矿相比,超薄钙钛矿由于打破了块状晶格限制而展现出更多可用的组成。再加上晶格弛豫和量子限制,超薄钙钛矿具有无限有趣的性质值得探索。开发具有可变组成和结构的超薄钙钛矿是充分探索这个多功能家族的必要条件。在此,通过构建由固液相之间电荷分离产生的界面电场诱导的定向溶剂微环境,构思了一种通用策略,这有利于控制前驱体分布,并使晶体优先以横向模式成核和生长。从层状到非层状、有机到无机、有毒到低毒无铅钙钛矿,实现了超薄钙钛矿的全范围合成。这项工作为通过组成工程探索超薄钙钛矿以及能量转换应用中的器件小型化都开辟了机会。

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