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Synthesis and luminescent behavior of UV induced Dy3+ activated LaAlO3
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  • 作者:D. Singh ; J. Kaur ; N. S. Suryanarayana…
  • 刊名:Journal of Materials Science: Materials in Electronics
  • 出版年:2017
  • 出版时间:February 2017
  • 年:2017
  • 卷:28
  • 期:3
  • 页码:2462-2470
  • 全文大小:
  • 刊物类别:Chemistry and Materials Science
  • 刊物主题:Optical and Electronic Materials; Characterization and Evaluation of Materials;
  • 出版者:Springer US
  • ISSN:1573-482X
  • 卷排序:28
文摘
Dy3+ doped Lanthanum Aluminate phosphors are prepared for different concentrations of dopant and the luminescent properties of the phosphor are studied. High temperature modified solid-state reaction method is used for the synthesis. XRD analysis confirms the formation of LaAlO3:Dy3+ phosphor. Average crystallite size calculated is 40.085 nm.Thermoluminescence study of UV induced LaAlO3:Dy3+ phosphor is discussed in this paper. Thermoluminescence glow peak is recorded for different UV exposure time and for different concentrations of dopant. Kinetic parameters such as shape factor, activation energy, order of kinetics are calculated by using computerized glow curve deconvolution technique. Activation energy varies from 0.63 to 0.72 eV. The TL glow curve intensity varies nearly linear with increasing UV dose. Photoluminescence (PL) emission spectra are recorded for different concentrations of dopant. Highest intensity of PL emission was obtained for 1.5 mol% of Dy3+ doped LaAlO3 phosphor. The excitation spectra of Dy3+ doped LaAlO3 phosphor monitored at 550 nm shows broad band around 260 nm and a sharp peak at 394 nm. Peaks with lower intensity are obtained at 320 nm, 363 nm and 384 nm. In the Pl emission spectra, peak at 554 nm (yellow greenish) has highest intensity. Peaks with less intensity are obtained at 466 nm (blue), 645 nm (orange red) and 740 nm (brownish red). Pl intensity varies linearly with increasing concentration of dopant. CIE chromaticity coordinates are calculated for LaAlO3:Dy3+ (1.5 mol%), x = 0.3586 and y = 0.5421 which corresponds to yellow–greenish region. The prepared phosphor may find application in dosimetry and optical devices.

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