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具有超高抗水稳定性的一维混合卤化亚铜的宽带蓝光发射

Broadband blue light emissions of one-dimensional hybrid Cu(I) halides with ultrahigh anti -water stability.

作者信息

Lin Na, Li Yun-Xia, Liu Yu, Sun Kai-Qi, Zhang Hong-Yan, Lei Xiao-Wu, Chen Zhi-Wei

机构信息

Research institute of Optoelectronic Functional Materials, School of Chemistry, Chemical Engineering and Materials, Jining University, Qufu, Shandong, 273155, P. R. China.

School of Chemistry and Chemical Engineering, Qufu Normal University, Qufu, Shandong, 273165, P. R. China.

出版信息

Dalton Trans. 2024 Oct 15;53(40):16577-16584. doi: 10.1039/d4dt02072c.

DOI:10.1039/d4dt02072c
PMID:39344935
Abstract

Low-dimensional organic-inorganic hybrid lead halide perovskites have attracted much interest in solid-state lighting and displays, but the toxicity and instability of lead halide are obstacles to their industrial applications, which must be overcome. As an alternative, Cu(I)-based hybrid metal halides have emerged as a new type of luminescent material owing to their diversified structure, adjustable luminescence, low toxicity and low cost. Herein, we report three one-dimensional (1D) hybrid Cu(I)-based halides with the general formula ACuBr (A = [(Me)-Pipz] and [BuDA] and [TMEDA]). These 1D hybrid Cu(I) halides display stable broadband blue emission with maximum emission peaks in the range of 445-474 nm and the highest photoluminescence quantum yield of 37.8%. Furthermore, in-depth experimental and theoretical investigations revealed that the broadband blue emissions originate from the radiative recombination of self-trapped excitons. Most importantly, there is no structural degradation and attenuation of emission intensity even after continuously soaking these halides in water for at least two months, demonstrating their ultra-high anti-water stability. Hirshfeld surface analysis shows that a large number of weak hydrogen bonds can protect the inorganic skeleton from degradation due to water. This work provides a new strategy for the design of water-stable Cu(I)-based halides with efficient blue emission and wide potential applications in humid environments.

摘要

低维有机-无机杂化铅卤化物在固态照明和显示领域引起了广泛关注,但铅卤化物的毒性和不稳定性是其工业应用的障碍,必须加以克服。作为替代方案,基于Cu(I)的杂化金属卤化物因其结构多样、发光可调、低毒且低成本而成为一种新型发光材料。在此,我们报道了三种通式为ACuBr(A = [(Me)-Pipz]、[BuDA]和[TMEDA])的一维(1D)基于Cu(I)的卤化物。这些一维基于Cu(I)的卤化物呈现出稳定的宽带蓝光发射,最大发射峰在445 - 474 nm范围内,最高光致发光量子产率为37.8%。此外,深入的实验和理论研究表明,宽带蓝光发射源于自陷激子的辐射复合。最重要的是,即使将这些卤化物在水中连续浸泡至少两个月后,也没有结构降解和发射强度衰减,证明了它们超高的抗水稳定性。 Hirshfeld表面分析表明,大量弱氢键可以保护无机骨架不被水降解。这项工作为设计具有高效蓝光发射且在潮湿环境中具有广泛潜在应用的水稳定Cu(I)基卤化物提供了一种新策略。

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