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解锁三波段持续发光:通过对NaSrSiO:Pr环硅酸盐进行结构调制实现不可见的UVC-UVB和可见红光发射。

Unlocking triple-band persistent luminescence: invisible UVC-UVB and visible red emission through structural modulation of NaSrSiO:Pr cyclosilicate.

作者信息

Wang Yi, Du Jiaren, Lin Hengwei, Poelman Dirk, Zych Eugeniusz

机构信息

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

LumiLab, Department of Solid State Sciences, Ghent University, Krijgslaan 281-S1, Ghent B-9000, Belgium.

出版信息

Mater Horiz. 2025 Aug 14. doi: 10.1039/d5mh01199j.

Abstract

Materials that emit ultraviolet C (UVC) or ultraviolet B (UVB) radiation are essential in domains such as environmental surveillance, public health, and optoelectronic technologies, owing to their elevated photon energy and distinct optical characteristics. However, the development of innovative persistent luminescent phosphors exhibiting emission within the UVC or UVB spectral range continues to pose a considerable challenge. Herein we present a novel Pr-doped NaSrSiO phosphor featuring a cyclosilicate framework, which exhibits sustained photon emission in the UVC and UVB regions, alongside luminescence in the red spectral range. The NaSrSiO:Pr phosphor demonstrates pronounced and long-lasting UVC, UVB and red persistent luminescence following X-ray excitation, underscoring its effectiveness for utilization in both dark and bright environments. Moreover, the incorporation of smaller ionic radius co-dopants such as Mg or Ca effectively enhances the red emission intensity of the phosphor. In contrast, the introduction of the larger ionic radius co-dopant Ba not only enhances the content of UVC emission but also improves the overall luminescent efficacy. As the content of Ba increases, the phosphor exhibits a spectral transition from UVC to UVB within the ultraviolet region. Notably, the applications of this phosphor were assessed in bright-field and dark-field imaging, showcasing its considerable potential for high-contrast monitoring in bright daylight, and advanced optical marking technologies. This work advances the development of visible-to-invisible persistent luminescent materials and offers a good example of engineering the cyclosilicate matrices for luminescence spectrum tuning.

摘要

发射紫外线C(UVC)或紫外线B(UVB)辐射的材料在环境监测、公共卫生和光电子技术等领域至关重要,这归因于它们较高的光子能量和独特的光学特性。然而,开发在UVC或UVB光谱范围内发光的新型持久发光磷光体仍然是一个相当大的挑战。在此,我们展示了一种具有环硅酸盐骨架的新型掺Pr的NaSrSiO磷光体,它在UVC和UVB区域表现出持续的光子发射,同时在红色光谱范围内发光。NaSrSiO:Pr磷光体在X射线激发后表现出显著且持久的UVC、UVB和红色持久发光,突出了其在黑暗和明亮环境中使用的有效性。此外,掺入较小离子半径的共掺杂剂如Mg或Ca可有效提高磷光体的红色发射强度。相比之下,引入较大离子半径的共掺杂剂Ba不仅提高了UVC发射的含量,还提高了整体发光效率。随着Ba含量的增加,磷光体在紫外区域内呈现从UVC到UVB的光谱转变。值得注意的是,对这种磷光体的应用在明场和暗场成像中进行了评估,展示了其在明亮日光下进行高对比度监测以及先进光学标记技术方面的巨大潜力。这项工作推动了从可见光到不可见光的持久发光材料的发展,并为通过环硅酸盐基质进行发光光谱调谐提供了一个很好的范例。

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