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用于激发波长响应三模态发光和高级防伪的锑掺杂铯锆氯双钙钛矿的机械化学合成

Mechanochemical synthesis of Sb-doped CsZrCl double perovskites for excitation-wavelength-responsive trimodal luminescence and high-level anti-counterfeiting.

作者信息

Chen Qiaochu, Ma Xuehan, Dong Guifu, Yan Hongbin

机构信息

Hunan Automotive Engineering Vocational University Zhuzhou 412001 P. R. China

School of Packaging Design and Art, Hunan University of Technology Zhuzhou 412007 P. R. China

出版信息

RSC Adv. 2025 Jul 28;15(33):26800-26806. doi: 10.1039/d5ra03637b. eCollection 2025 Jul 25.

Abstract

All-inorganic lead-free halide perovskites have shown great promise in the field of optoelectronics. However, the room-temperature, low-cost, and large-scale synthesis of such materials remains challenging. Here, we report a rapid mechanochemical synthesis strategy based on ethanol-assisted ball milling to successfully prepare CsZrCl double perovskite with Sb doping, which exhibits tricolor luminescence with excitation wavelength-dependent characteristics. The material emits blue (450 nm, [ZrCl] self-trapped exciton emission), warm white (450/610 nm dual peaks), and red (610 nm, SbP → S transition) light under 254, 310, and 365 nm ultraviolet excitation, respectively, with a photoluminescence quantum yield (PLQY) stably exceeding 30%. When the CsZrCl:Sb samples are fabricated into anti-counterfeiting patterns, they emit blue, warm white, and red light under 254, 310, and 365 nm ultraviolet lamp excitation, respectively, demonstrating excellent application prospects in the field of anti-counterfeiting encryption. This study provides a new idea for the development of efficient and environmentally friendly synthesis of multi-modal anti-counterfeiting materials.

摘要

全无机无铅卤化物钙钛矿在光电子领域已展现出巨大潜力。然而,此类材料的室温、低成本及大规模合成仍具有挑战性。在此,我们报告一种基于乙醇辅助球磨的快速机械化学合成策略,成功制备出掺锑的CsZrCl双钙钛矿,其呈现出具有激发波长依赖性特征的三色发光。该材料在254、310和365 nm紫外激发下分别发射蓝光(450 nm,[ZrCl]自陷激子发射)、暖白光(450/610 nm双峰)和红光(610 nm,SbP→S跃迁),光致发光量子产率(PLQY)稳定超过30%。当将CsZrCl:Sb样品制成防伪图案时,它们在254、310和365 nm紫外灯激发下分别发射蓝光、暖白光和红光,在防伪加密领域展示出优异的应用前景。本研究为开发高效环保的多模态防伪材料合成提供了新思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0791/12302505/061779835e7c/d5ra03637b-f1.jpg

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What Happens When Halide Perovskites Meet with Water?卤化物钙钛矿遇水会发生什么?
J Phys Chem Lett. 2022 Mar 17;13(10):2281-2290. doi: 10.1021/acs.jpclett.2c00166. Epub 2022 Mar 4.

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