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一种用于高通量生产卤化物钙钛矿的通用全固态合成方法。

A universal all-solid synthesis for high throughput production of halide perovskite.

作者信息

Zheng Luyao, Nozariasbmarz Amin, Hou Yuchen, Yoon Jungjin, Li Wenjie, Zhang Yu, Wu Haodong, Yang Dong, Ye Tao, Sanghadasa Mohan, Wang Ke, Poudel Bed, Priya Shashank, Wang Kai

机构信息

Materials Research Institute, The Pennsylvania State University, University Park, PA, 16802, USA.

U.S. Army Combat Capabilities Development Command Aviation & Missile Center, Redstone Arsenal, AL, 35898, USA.

出版信息

Nat Commun. 2022 Dec 1;13(1):7399. doi: 10.1038/s41467-022-35122-7.

Abstract

Halide perovskites show ubiquitous presences in growing fields at both fundamental and applied levels. Discovery, investigation, and application of innovative perovskites are heavily dependent on the synthetic methodology in terms of time-/yield-/effort-/energy- efficiency. Conventional wet chemistry method provides the easiness for growing thin film samples, but represents as an inefficient way for bulk crystal synthesis. To overcome these, here we report a universal solid state-based route for synthesizing high-quality perovskites, by means of simultaneously applying both electric and mechanical stress fields during the synthesis, i.e., the electrical and mechanical field-assisted sintering technique. We employ various perovskite compositions and arbitrary geometric designs for demonstration in this report, and establish such synthetic route with uniqueness of ultrahigh yield, fast processing and solvent-free nature, along with bulk products of exceptional quality approaching to single crystals. We exemplify the applications of the as-synthesized perovskites in photodetection and thermoelectric as well as other potentials to open extra chapters for future technical development.

摘要

卤化物钙钛矿在基础和应用层面的新兴领域中无处不在。创新钙钛矿的发现、研究和应用在时间/产率/工作量/能源效率方面严重依赖于合成方法。传统的湿化学方法便于生长薄膜样品,但对于块状晶体合成而言效率较低。为克服这些问题,我们在此报告一种通用的基于固态的路线来合成高质量钙钛矿,即在合成过程中同时施加电场和机械应力场,即电场和机械场辅助烧结技术。在本报告中,我们采用各种钙钛矿组成和任意几何设计进行演示,并建立了这种具有超高产率、快速加工和无溶剂特性的独特合成路线,同时得到质量优异、接近单晶的块状产物。我们举例说明了合成的钙钛矿在光电探测、热电以及其他方面的应用,为未来技术发展开启新篇章。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/448a/9715688/dbfc696d080b/41467_2022_35122_Fig1_HTML.jpg

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