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用于具有负热猝灭特性的可见光到近红外光致发光的镱和锰掺杂CsPbCl纳米晶体的光诱导合成

Photo-Induced Synthesis of Ytterbium and Manganese-Doped CsPbCl Nanocrystals for Visible to Near-Infrared Photoluminescence with Negative Thermal Quenching.

作者信息

Fang Xiaochen, Chen Zhuo, Leung Mandy Hei Man, Zheng Biao, Wang Liwei, An Meng, Asakura Yusuke, Yamauchi Yusuke, Yuan Zhanhui

机构信息

College of Materials Engineering, Fujian Agriculture and Forestry University, Fuzhou, 350002, China.

College of Mechanical and Electrical Engineering, Shaanxi University of Science and Technology, Xi'an, 710021, China.

出版信息

Adv Sci (Weinh). 2025 Jan;12(4):e2408927. doi: 10.1002/advs.202408927. Epub 2024 Dec 4.

Abstract

Rare-earth-doped all-inorganic perovskite applications for near-infrared (NIR) emission are crucial for the construction of the next generation of intelligent lighting sources. However, the preparation of rare-earth-doped all-inorganic perovskite is complex, and difficult to control, and the issue of thermal quenching poses significant challenges to its practical application. Here, in order to address these issues, a convenient photo-induced synthesis method for CsPbCl:Mn/Yb nanocrystals (NCs) is proposed by decomposing carbon tetrachloride with 365 nm light to provide chloride ions and regulate the formation of perovskite at room temperature. The negative thermal quenching in the NIR emission is achieved through the energy transfer between Mn and Yb. The emission intensity of Yb enhances 3.2 times when the temperature rises to ≈427 K. Furthermore, with the help of the orange emission from the Mn ions and the NIR emission from the Yb ions, visible to NIR light emitting diode (LED) devices are constructed and applied in orange light illumination and night vision imaging. This study enriches the preparation methods and chemical research on perovskite doping, which may open up new opportunities for the widespread application of perovskite-based materials or device engineering.

摘要

稀土掺杂的全无机钙钛矿在近红外(NIR)发射方面的应用对于构建下一代智能照明光源至关重要。然而,稀土掺杂全无机钙钛矿的制备过程复杂且难以控制,热猝灭问题对其实际应用构成了重大挑战。在此,为了解决这些问题,通过用365 nm光分解四氯化碳以提供氯离子并在室温下调节钙钛矿的形成,提出了一种简便的光诱导合成CsPbCl:Mn/Yb纳米晶体(NCs)的方法。通过Mn和Yb之间的能量转移实现了近红外发射中的负热猝灭。当温度升至约427 K时,Yb的发射强度增强了3.2倍。此外,借助Mn离子的橙色发射和Yb离子的近红外发射,构建了可见到近红外发光二极管(LED)器件,并将其应用于橙色光照明和夜视成像。本研究丰富了钙钛矿掺杂的制备方法和化学研究,这可能为钙钛矿基材料或器件工程的广泛应用开辟新的机遇。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/410f/11775517/5471e8c5b78b/ADVS-12-2408927-g004.jpg

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