Enhancing the water-resistance stability of CaS:Eu2+,Sm2+ phosphor with SiO2-PMMA composite coating
来源期刊:Journal of Rare Earths2015年第9期
论文作者:张杰强 范艳伟 陈朝阳 闫世友 王军华 赵鹏君 郝斌 盖敏强
文章页码:922 - 926
摘 要:This work was aimed at improving the water-resistance stability of Ca S:Eu2+,Sm2+ phosphor. An organic-inorganic composite coating method was adopted in order to obtain ideal phosphor. The phosphor was coated with Si O2 via sol-gel technique and it was also covered by polymethyl methacrylate(PMMA) via dissolution-cohesion technique. Powder X-ray diffraction(XRD) patterns, fluorescence spectroscopy and transmission electron microscopy(TEM) were employed to characterize the phase structures, emission spectrum and surface morphologies, respectively. In addition, the water-resistance stability of the phosphor was tested by soaking the phosphor into deionized water. The results showed that the phase structures remained the same as the uncoated phosphor and the position of the fluorescence peak did not shift after surface treatment. Results showed that the water-resistance stability of the phosphor was improved to some degree. Moreover, the photoluminescence(PL) intensity of the coated phosphors reduced less than 10% of the original phosphors. Though being soaked into deionized water for 50 h, the phosphor coated with 10 wt.%Si O2-10 wt.%PMMA retained 85.9% PL intensity compared to that of the uncoated phosphor. Therefore, it could be concluded that the 10 wt.%Si O2-10 wt.%PMMA composite coating effectively improved the phosphor water resistance and retained its good optical properties.
张杰强1,2,范艳伟1,陈朝阳1,闫世友1,王军华1,赵鹏君1,2,郝斌1,2,盖敏强1
1. Key Laboratory of Functional Materials and Devices under Special Environments, Xinjiang Key Laboratory of Electronic Information Materials and Devices, Xinjiang Technical Institute of Physics and Chemistry, Chinese Academy of Sciences2. University of Chinese Academy of Sciences
摘 要:This work was aimed at improving the water-resistance stability of Ca S:Eu2+,Sm2+ phosphor. An organic-inorganic composite coating method was adopted in order to obtain ideal phosphor. The phosphor was coated with Si O2 via sol-gel technique and it was also covered by polymethyl methacrylate(PMMA) via dissolution-cohesion technique. Powder X-ray diffraction(XRD) patterns, fluorescence spectroscopy and transmission electron microscopy(TEM) were employed to characterize the phase structures, emission spectrum and surface morphologies, respectively. In addition, the water-resistance stability of the phosphor was tested by soaking the phosphor into deionized water. The results showed that the phase structures remained the same as the uncoated phosphor and the position of the fluorescence peak did not shift after surface treatment. Results showed that the water-resistance stability of the phosphor was improved to some degree. Moreover, the photoluminescence(PL) intensity of the coated phosphors reduced less than 10% of the original phosphors. Though being soaked into deionized water for 50 h, the phosphor coated with 10 wt.%Si O2-10 wt.%PMMA retained 85.9% PL intensity compared to that of the uncoated phosphor. Therefore, it could be concluded that the 10 wt.%Si O2-10 wt.%PMMA composite coating effectively improved the phosphor water resistance and retained its good optical properties.
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