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通过多种制备方法调控近红外持续发光

Modulating Near-Infrared Persistent Luminescence via Diverse Preparation Approaches.

作者信息

Wang Xiaomeng, Zhu Hengli, Liu Yan, Li Jingyuan, Cao Lejia, Du Jiaren, Lin Hengwei

机构信息

International Joint Research Center for Photo-Responsive Molecules and Materials, School of Chemical and Material Engineering, Jiangnan University, Wuxi 214122, China.

出版信息

Nanomaterials (Basel). 2024 Oct 9;14(19):1613. doi: 10.3390/nano14191613.

Abstract

Near-infrared (NIR) persistent luminescence (PersL) materials have attracted extensive attention due to their great promise in medical diagnostics, bio-imaging, night vision surveillance, multi-level anticounterfeiting, and information encryption. To achieve NIR PersL (micro/nano-) materials with the desired properties, a variety of synthesis methods have been employed, including solid-phase reaction and liquid-phase synthesis. Different synthesis methods have different but important effects on the micro/nano-structure, luminescence, and PersL properties of the materials. Moreover, the influence of various synthesis methods on the properties of NIR PersL materials determines the selection of preparation approaches for other new material systems. Taking the representative NIR PersL ZnGaO:Cr material as an example, four synthesis procedures are applied, namely, high-temperature solid-state reaction (SSR), high-temperature molten salt method (MSM), hydrothermal method (HM), and microwave-assisted solid-state (MASS) method. The structural and luminescent properties of samples made by SSR, MSM, HM, and MASS are compared. Notably, it is revealed that the MASS method can create additional trapping energy levels, which is of great significance for emerging applications. This work demonstrates the different effects of synthesis methods on PersL performance and provides a good guideline for the rapid and reasonable selection of preparation methods for diverse applications.

摘要

近红外(NIR)持久发光(PersL)材料因其在医学诊断、生物成像、夜视监测、多级防伪和信息加密等方面的巨大潜力而受到广泛关注。为了获得具有所需性能的近红外PersL(微/纳米)材料,人们采用了多种合成方法,包括固相反应和液相合成。不同的合成方法对材料的微/纳米结构、发光和PersL性能有着不同但重要的影响。此外,各种合成方法对近红外PersL材料性能的影响决定了其他新材料体系制备方法的选择。以具有代表性的近红外PersL ZnGaO:Cr材料为例,应用了四种合成程序,即高温固相反应(SSR)、高温熔盐法(MSM)、水热法(HM)和微波辅助固相(MASS)法。比较了通过SSR、MSM、HM和MASS制备的样品的结构和发光性能。值得注意的是,结果表明MASS方法可以产生额外的俘获能级,这对新兴应用具有重要意义。这项工作展示了合成方法对PersL性能的不同影响,并为快速合理地选择适用于各种应用的制备方法提供了良好的指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1f2/11478689/e42f03f61f1c/nanomaterials-14-01613-g001.jpg

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