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通过与g-CN耦合实现的SrSiON:Eu荧光粉的双荧光特性及增强的热稳定性

Dual fluorescence properties and enhanced thermal stability of SrSiON:Eu phosphors by coupling with g-CN.

作者信息

Wang Jinlong, Song Hao, Dong Peipei, Zhao Zihan, Zhang Yanjie

机构信息

Research Institute of Photonics, Dalian Polytechnic University Dalian 116034 China

College (Institute) of Integrative Medicine, Dalian Medical University Dalian 116044 China

出版信息

RSC Adv. 2023 Feb 23;13(10):6442-6452. doi: 10.1039/d2ra07562h. eCollection 2023 Feb 21.

Abstract

Nowadays, considerable efforts have been extensively devoted to explore a general strategy for improving the color uniformity and thermal stability of phosphors, which is vital for its applications in health and comfort lighting. In this study, the SrSiON:Eu/g-CN composites were successfully prepared a facile and effective solid-state method to improve their photoluminescence properties and thermal stability. The coupling microstructure and chemical composition of the composites were demonstrated by high-resolution transmission electron microscopy (HRTEM) and EDS line-scanning analyses. Notably, the dual emissions at ∼460 nm (blue) and ∼520 nm (green) were observed for the SrSiON:Eu/g-CN composite under near-ultraviolet (NUV) excitation, attributed to the g-CN and 5d-4f transition of Eu ions, respectively. The coupling structure will be beneficial to the color uniformity of the blue/green emitting light. Further, SrSiON:Eu/g-CN composites exhibited a similar photoluminescence intensity compared with the SrSiON:Eu phosphor even after thermal treatment at 500 °C for 2 h due to the protection of g-CN. The decreased decay time (1798.3 ns) of green emission for SSON/CN compared with SSON phosphor (1835.5 ns) indicated that the coupling structure suppressed the non-radiative transition and improved photoluminescence properties and thermal stability. This work provides a facile strategy to construct SrSiON:Eu/g-CN composites with coupling structure for improved color uniformity and thermal stability.

摘要

如今,人们已经付出了相当大的努力来广泛探索一种提高磷光体颜色均匀性和热稳定性的通用策略,这对于其在健康和舒适照明中的应用至关重要。在本研究中,通过一种简便有效的固态方法成功制备了SrSiON:Eu/g-CN复合材料,以改善其光致发光性能和热稳定性。通过高分辨率透射电子显微镜(HRTEM)和EDS线扫描分析对复合材料的耦合微观结构和化学成分进行了表征。值得注意的是,在近紫外(NUV)激发下,SrSiON:Eu/g-CN复合材料在460 nm(蓝色)和520 nm(绿色)处观察到双重发射,分别归因于g-CN和Eu离子的5d-4f跃迁。这种耦合结构将有利于蓝/绿发射光的颜色均匀性。此外,由于g-CN的保护,即使在500°C下热处理2 h后,SrSiON:Eu/g-CN复合材料与SrSiON:Eu磷光体相比仍表现出相似的光致发光强度。与SSON磷光体(1835.5 ns)相比,SSON/CN绿色发射的衰减时间缩短(1798.3 ns),表明这种耦合结构抑制了非辐射跃迁,提高了光致发光性能和热稳定性。这项工作提供了一种简便的策略来构建具有耦合结构的SrSiON:Eu/g-CN复合材料,以改善颜色均匀性和热稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac19/9947518/eb934480b3e9/d2ra07562h-f1.jpg

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