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使用全无机氮化物磷光体薄膜的高显色性和高亮度激光照明。

High color rendering and high-luminance laser lighting using all inorganic nitride phosphor films.

作者信息

Jiang Zhi, Yuan Shaoda, Xu Jian, Du Baoli, Xu Peng, Zhang Le, Kang Jian, Zhao Yujie, Dam-Hansen Carsten, Jensen Ole Bjarlin

机构信息

School of Physics and Electronic Information, Henan Polytechnic University Jiaozuo 454000 P. R. China

School of Physics and Electronics Engineering, Jiangsu Normal University Xuzhou 221116 P. R. China.

出版信息

RSC Adv. 2023 Aug 25;13(36):25561-25570. doi: 10.1039/d3ra04062c. eCollection 2023 Aug 21.

Abstract

Despite the huge advances that have been made in the development of ultra-high luminance laser lighting, achieving high color rendering properties in such systems at the same time remains a challenge. Recent studies show that in most cases, the luminous efficacy (LE) of laser lighting is compromised to improve the color rendering index (CRI). In this study, a possible solution to this problem has been proposed by preparing phosphor-in-glass (PiG) films comprised of the yellow-emitting phosphor (LSN:Ce) and the red-emitting phosphor (CASN:Eu). The composite material synthesized in this study exhibited outstanding optical and thermal properties. A uniform white light with a high CRI of 80.0 and a high LE of 185.9 lm W was achieved by optimizing the yellow/red ratio and the emission peak position of the blue laser. Furthermore, it was found that this design enabled the phosphor to restrict the light emission area effectively, thus attaining a high luminous exitance of 1302 lm mm. With their superior optical performance, the PiG films can be regarded as promising color converter candidates for future high-quality laser-based white light sources.

摘要

尽管超高亮度激光照明的发展取得了巨大进步,但在这类系统中同时实现高显色性仍然是一项挑战。最近的研究表明,在大多数情况下,激光照明的发光效率(LE)会受到影响以提高显色指数(CRI)。在本研究中,通过制备由发黄光的荧光粉(LSN:Ce)和发红光的荧光粉(CASN:Eu)组成的玻璃中荧光粉(PiG)薄膜,提出了这个问题的一种可能解决方案。本研究中合成的复合材料表现出优异的光学和热性能。通过优化黄色/红色比例和蓝色激光的发射峰位置,获得了显色指数为80.0、发光效率高达185.9 lm/W的均匀白光。此外,发现这种设计使荧光粉能够有效地限制发光面积,从而实现了1302 lm/mm的高发光出射度。凭借其优异的光学性能,PiG薄膜可被视为未来高质量激光基白光源的有前途的颜色转换候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c21b/10450390/d4ace6e475f4/d3ra04062c-f1.jpg

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