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Effect of Crystal Structural Environment of Pr3+ on Photoluminescence Characteristics of Double Tungstates
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  • Effect of Crystal Structural Environment of Pr3+ on Photoluminescence Characteristics of Double Tungstates
  • Effect of Crystal Structural Environment of Pr3+ on Photoluminescence Characteristics of Double Tungstates
저자명
Lee. Kyoung-Ho,Chae. Ki-Woong,Cheon. Chae-Il,Kim. Jeong-Seog
간행물명
한국세라믹학회지
권/호정보
2011년|48권 2호|pp.183-188 (6 pages)
발행정보
한국세라믹학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
서지반출

기타언어초록

In this article, the effect of the crystal structural environment of $Pr^{3+}$ ions on the photoluminescence (PL) characteristics of double tungstates, such as $A(M_{1-X}Pr_X)W_2O_8$ (A=Li, Cs, M = In, Y, Sc, La; $0.007{leq}x{leq}0.1$) and $La_{1.96}Pr_{0.04}W_3O_{12}$ are characterized. By varying the ion radius in A and M sites, the structural environment of $Pr^{3+}$ ions were modified. The structural criteria, that is, the point charge electrostatic potentials V around the $Pr^{3+}$ activator, were calculated using the crystal structural parameters. The point charge potential V can be a valid criterion for $^3P_o$ quenching in various double tungstates. When the calculated V values are large (> 6.0), the luminescence from the $^3P_0$ level becomes dominant. When the calculated V values are about 3.8, the $^1D_2$ line appears weakly but $^3P_0$-level luminescence is absent. When the calculated V values are small (< 2.0), the luminescence from the $^1D_2$ level becomes dominant and $^3P_0$-level luminescence is absent. At 2.0<V<4.0, the $^3P_o$ quenching to $^1D_2$ level occurs substantially in accordance with the structural criterion of the point charge potential model.