材料科学
磷光
涂层
铝酸盐
发光
持续发光
余辉
锶
荧光粉
单斜晶系
等离子体电解氧化
铕
铝
化学工程
冶金
纳米技术
电解质
光电子学
水泥
光学
晶体结构
电极
有机化学
物理化学
化学
工程类
物理
热释光
荧光
伽马射线暴
天文
作者
Ivita Bite,Guna Krieķe,Aleksejs Zolotarjovs,Katrīna Laganovska,Virginija Liepina,Krišjānis Šmits,Krisjanis Auzins,L. Grigorjeva,D. Millers,Linards Skuja
标识
DOI:10.1016/j.matdes.2018.10.021
摘要
This study presents a novel approach to produce phosphorescent coatings on metal surfaces. Strontium aluminates are the most popular modern phosphorescent materials exhibiting long afterglow at room temperature and a broad spectral distribution of luminescence in the visible range. However, despite a large amount of research done, methods for synthesis of such materials remain relatively energy inefficient and environmentally unfriendly. A long-afterglow luminescent coating containing SrAl2O4:Eu2+, Dy3+ is prepared by the plasma electrolytic oxidation on the surface of commercial aluminum alloy Al6082. During the electrical discharges in this process, the strontium aluminate is formed in a similar way to the solid-state reaction method. X-ray powder diffraction analysis confirms that the monoclinic SrAl2O4 phase is present in the coating. Optical properties of the obtained coating were analyzed with luminescence methods classically used for studies of luminophores. The performance of the coating was compared with commercially available strontium aluminate powder. The proposed method of coating synthesis may be of value for the development of energy-efficient and long-lasting automotive and public safety infrastructure.
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