Reproducible high-quality perovskite single crystals by flux-regulated crystallization with a feedback loop

Author:

Haruta YukiORCID,Ye HanyangORCID,Huber Paul,Sandor NicholasORCID,Pavesic Junior AntoineORCID,Dayneko SergeyORCID,Qiu Shuang,Yeddu Vishal,Saidaminov Makhsud I.ORCID

Abstract

AbstractControlling the linear growth rate, a critical factor that determines crystal quality, has been a challenge in solution-grown single crystals due to complex crystallization kinetics influenced by multiple parameters. Here we introduce a flux-regulated crystallization (FRC) method to directly monitor and feedback-control the linear growth rate, circumventing the need to control individual growth conditions. When applied to metal halide perovskites, the FRC maintains a stable linear growth rate for over 40 h in synthesizing CH3NH3PbBr3 and CsPbBr3 single crystals, achieving outstanding crystallinity (quantified by a full width at half-maximum of 15.3 arcsec in the X-ray rocking curve) in a centimetre-scale single crystal. The FRC is a reliable platform for synthesizing high-quality crystals essential for commercialization and systematically exploring crystallization conditions, maintaining a key parameter—the linear growth rate—constant, which enables a comprehensive understanding of the impact of other influencing factors.

Funder

Canadian Network for Research and Innovation in Machining Technology, Natural Sciences and Engineering Research Council of Canada

Canada Research Chairs

Canadian Foundation for Innovation

Publisher

Springer Science and Business Media LLC

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