Jaberi Farzaneh, Movahed Saeed Ostad, Ahmadpour Ali
Chemical Engineering Department, Faculty of Engineering, Ferdowsi University of Mashhad, Mashhad, Iran.
Department of Chemistry, Faculty of Science, Ferdowsi University of Mashhad, Mashhad, Iran.
J Fluoresc. 2019 Mar;29(2):461-471. doi: 10.1007/s10895-019-02356-6. Epub 2019 Feb 8.
After proper stimulation, long afterglow phosphors formulated as pigment in waterborne paints can emit light after the removal of the excitation light source. The encapsulation of SrAlO: Eu, Dy phosphor by TiO2 and SiO2 individually, and in combination by a precipitation method was studied. The water resistance and photoluminescence behavior of the coated phosphors as a pigment for potential use in waterborne photoluminescence paints were evaluated. It revealed that the TiO2- SiO2 content coating layer was precipitated on the studied phosphor successfully. The higher trend of the TiO2 for coating on the phosphor when compared with the SiO2 was observed from EDS spectra. The SEM micrographs showed a continuous and uniform SiO2-TiO2 layer on the coated phosphor. Based on XRD results, the existence of the TiO2 in the coating layer had beneficial effect on the average crystallite size values. The pH solution versus time showed that the availability of the TiO2 in coated layer improved water resistance of the coated phosphor, although, in comparison with SiO2, it was less effective. The coated phosphor with TiO2 had the minimum afterglow brightness decay and consequently, it was recommended as a suitable pigment for waterborne photoluminescence paints.
经过适当刺激后,配制成水性涂料中颜料的长余辉磷光体在激发光源移除后仍能发光。研究了通过沉淀法分别用TiO₂和SiO₂以及两者结合对SrAlO: Eu, Dy磷光体进行包覆。评估了包覆后的磷光体作为潜在用于水性光致发光涂料的颜料的耐水性和光致发光行为。结果表明,TiO₂ - SiO₂含量的涂层成功沉淀在研究的磷光体上。从能谱图可以观察到,与SiO₂相比,TiO₂在磷光体上的包覆趋势更高。扫描电子显微镜图像显示包覆后的磷光体上有连续且均匀的SiO₂ - TiO₂层。基于X射线衍射结果,涂层中TiO₂的存在对平均晶粒尺寸值有有益影响。pH值随时间的变化表明,尽管与SiO₂相比效果较差,但涂层中TiO₂的存在提高了包覆磷光体的耐水性。包覆TiO₂的磷光体的余辉亮度衰减最小,因此,推荐其作为水性光致发光涂料的合适颜料。