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      https://www.ias.ac.in/article/fulltext/boms/046/0071

    • Keywords

       

      Microemulsion method; tungsten oxide; coating method; luminous intensity.

    • Abstract

       

      WO$_3$:Eu$^{3+}$ powder was prepared by microemulsion method with cetyltrimethyl ammonium bromide (CTAB) as a surfactant. The prepared WO$_3$:Eu$^{3+}$ samples were wrapped with SiO$_2$ by a coating method. The WO$_3$:Eu$^{3+}$@ SiO$_2$ nanocomposites with the core-shell structure were prepared by controlling tetraethyl orthosilicate (TEOS) content (1, 3, 5 and 7%) and water–alcohol ratio (1:3, 1:1.5, 1:1 and 2:1). The structure, morphology and luminescence properties of the prepared WO$_3$:Eu$^{3+}$@ SiO$_2$ samples were characterized by XRD, SEM, TEM and fluorescence spectra. The results show that the prepared WO$_3$:Eu$^{3+}$@SiO$_2$ nanocomposites are spherical and granular, and the average particle size is below 100 nm. Under the condition of different TEOS contents, the strongest characteristic peak is located at 554 nm in the green light band at the excitation wavelength of 328 nm. Among the different water–alcohol ratio conditions, the prepared WO$_3$:Eu$^{3+}$@SiO$_2$ nanocomposite has the strongest luminescence intensity at the water–alcohol ratio of 1:3, and the excitation wavelength is 328 nm. The excitation spectra measured at 612 nm have prominent characteristic peaks at 362, 394, 422, 465 and 499 nm, which correspond to the transition of ${}^7$F$_0$${\rightarrow}$${}^5$D$_4$, ${}^7$F$_0$${\rightarrow}$${}^5$L$_6$, ${}^7$F$_0$${\rightarrow}$${}^5$D$_3$, ${}^7$F$_0$${\rightarrow}$${}^5$D$_2$ and ${}^7$F$_0$${\rightarrow}$${}^5$D$_1$,respectively.

    • Author Affiliations

       

      DONG LIANG1 2 SANG XIONG2 3 XIAOMENG ZHANG1 2 YUANFENG YE1 JINGXIN CAO1 XINGXING HU1 YAO SONG1 QIANWEN WEI1

      1. College of Materials Engineering, Jinling Institute of Technology, Nanjing 211167, Jiang Su, People’s Republic of China
      2. Jiangsu Key Laboratory of Advanced Structural Materials and Application Technology, Nanjing 211167, Jiang Su, People’s Republic of China
      3. College of Materials Science and Engineering, Nanjing Institute of Technology, Nanjing 211167, Jiang Su, People’s Republic of China
    • Dates

       
  • Bulletin of Materials Science | News

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