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一种用于快速大量制备无铅钙钛矿微晶的通用盐酸辅助粉末对粉末策略。

A universal hydrochloric acid-assistant powder-to-powder strategy for quick and mass preparation of lead-free perovskite microcrystals.

作者信息

Yang Huanxin, Chen Xiangxiang, Chu Yiyue, Sun Changjiu, Lu Haolin, Yuan Mingjian, Zhang Yuhai, Long Guankui, Zhang Libing, Li Xiyan

机构信息

Institute of Photoelectronic Thin Film Devices and Technology, Solar Energy Conversion Center, Nankai University, Tianjin, 300350, China.

Key Laboratory of Photoelectronic Thin Film Devices and Technology of Tianjin, Nankai University, Tianjin, 300350, China.

出版信息

Light Sci Appl. 2023 Mar 20;12(1):75. doi: 10.1038/s41377-023-01117-2.

Abstract

Lead-free halide perovskite materials possess low toxicity, broadband luminescence and robust stability compared with conventional lead-based perovskites, thus holding great promise for eyes-friendly white light LEDs. However, the traditionally used preparation methods with a long period and limited product yield have curtailed the commercialization of these materials. Here we introduce a universal hydrochloric acid-assistant powder-to-powder strategy which can accomplish the goals of thermal-, pressure-free, eco-friendliness, short time, low cost and high product yield, simultaneously. The obtained CsNaAgInBiCl microcrystals exhibit bright self-trapped excitons emission with quantum yield of (98.3 ± 3.8)%, which could retain (90.5 ± 1.3)% and (96.8 ± 0.8)% after continuous heating or ultraviolet-irradiation for 1000 h, respectively. The phosphor converted-LED exhibited near-unity conversion efficiency from ultraviolet chip to self-trapped excitons emission at ~200 mA. Various ions doping (such as CsNaAgInCl:Ln) and other derived lead-free perovskite materials (such as CsZrCl and CsMnBiCl) with high luminous performance are all realized by our proposed strategy, which has shown excellent availability towards commercialization.

摘要

与传统的铅基钙钛矿相比,无铅卤化物钙钛矿材料具有低毒性、宽带发光和强大的稳定性,因此在对眼睛友好的白光发光二极管方面具有巨大潜力。然而,传统的制备方法耗时较长且产品产率有限,这限制了这些材料的商业化。在此,我们引入了一种通用的盐酸辅助粉末到粉末策略,该策略可以同时实现无热、无压力、环保、时间短、成本低和产品产率高的目标。所获得的CsNaAgInBiCl微晶表现出明亮的自陷激子发射,量子产率为(98.3±3.8)%,在连续加热或紫外线照射1000小时后,分别可保留(90.5±1.3)%和(96.8±0.8)%。磷光体转换发光二极管在~200 mA电流下,从紫外芯片到自陷激子发射的转换效率接近100%。通过我们提出的策略,还实现了各种离子掺杂(如CsNaAgInCl:Ln)以及其他具有高发光性能的衍生无铅钙钛矿材料(如CsZrCl和CsMnBiCl),这显示出该策略在商业化方面具有出色的可用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c19/10025261/a07ffaa2d950/41377_2023_1117_Fig1_HTML.jpg

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