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Property of Optical Spectroscopy on the Lanthanum Tungstate doped Eu3+ Ion

Eu3+ 이온이 첨가된 란타넘텅스텐산화물의 분광학 특성

  • Seo, Hyojin (Department of Physics, Pukyoung National University) ;
  • Park, Cheolwoo (Department of Radiological Technology, Dong-Eui Institute of Technology)
  • Received : 2014.12.01
  • Accepted : 2015.01.25
  • Published : 2015.01.30

Abstract

$La_2W_3O_{12}:Eu^{3+}$ phosphors were prepared by solid state reaction method. The crystal structure was characterized by XRD pattern and ICSD card (78180). Luminescence properties of $La_2W_3O_{12}:Eu^{3+}$ are investigated by optical and laser-excitation spectroscopy in which emission and excitation spectra and time-resolved spectra are measured. The 1 mol % $Eu^{3+}$-doped $La_2W_3O_{12}$ phosphor exhibits broad excitation band peaking at 286 nm due to the ligand-to-metal charge transfer transition. The excitation lines due to the $^7F_0{\rightarrow}{^5D_4},{^5D_4},{^5L_6},{^5G_4},{^5D_3},{^5D_2}$ transitions of $Eu^{3+}$ are observed in the wavelength region 350-500 nm. The strong line emission is observed at 618 nm corresponding to the due to the $^5D_0{\rightarrow}^7F_2$ transition. The lifetime of 618 nm emission decreases with increasing temperature as 7 K ($114{\mu}s$), 100 K ($94{\mu}s$), 200 K ($10{\mu}s$) and 300 K ($0.5{\mu}s$).

본 연구는 고상법으로 형광체를 합성하였다. 모체 물질은 $La_2W_3O_{12}$에 활성제로 $Eu^{3+}$이온을 첨가하여 활성제 조성변화에 따른 XRD 분석과 여기 및 방출 스펙트럼 및 온도에 따른 형광 스펙트럼 분석과 수명시간을 측정하였다. $La_2W_3O_{12}:Eu^{3+}$의 1 mol%의 XRD 스펙트럼은 ICSD 카드 (78180)에 보고된 데이터 스펙트럼과 비교하였을 때 XRD 스펙트럼이 잘 일치함을 확인 하였다. $La_2W_3O_{12}$ 형광체에 활성제로 $Eu^{3+}$이온 1 mol%를 첨가한 여기 스펙트럼에서는 286 nm 근처에서 286 nm 넓은 전하전달밴드가 관찰된다. 이 전하전달밴드는 $WO_4$그룹과 $Eu^{3+}$이온의 전하 전달 밴드이며 $O^{2-}-W^{6+}$, $O^{2-}-Eu^{3+}$의 ligand-to-metal 전하 전달 흡수가 이루어진다. 350~500 nm 영역에서는 $Eu^{3+}$의 f-f 전이에 의한 피크가 나타났다. 여기 스펙트럼에서 $Eu^{3+}$$^7F_0{\rightarrow}{^5D_4},{^5D_4},{^5L_6},{^5G_4},{^5D_3},{^5D_2}$ 전이에 해당한다. 방출 스펙트럼은 280, 395 nm로 각각 여기한 결과 $Eu^{3+}$이온의 $^5D_0{\rightarrow}^7F_2$(618nm)에서 강한 피크가 보였다. 희토류 이온이 도핑 되지 않은 $La_2W_3O_{12}$ 형광체를 266 nm로 여기하여 온도에 변화 따른 방출 스펙트럼은 저온에서 상온으로 갈수록 형광의 세기가 약하게 나타났다. 온도에 따른 수명시간은 7 K($114{\mu}s$), 100 K($94{\mu}s$), 200 K($10{\mu}s$), 300 K($0.5{\mu}s$)로 나타났다.

Keywords

References

  1. G. Blasse, B.C. Grabmaier, "Luminescent Materials", Springer-Verlag, Berlin, Heidelberg, 1994.
  2. R.C. Ropp, "Luminescence and the Solid State, Studies in Inorganic Chemistry 12", Elsevier Science Publishing Company Inc., 1991.
  3. C.R. Ronda, T. Justel and H. Nikol, "Rare earth phosphors: Fundamentals and applications", J. Allo. Comp., 275, pp. 669-676, 1998.
  4. J.Y. Je, "Fluorescence Characteristics of GdOS: $Tb^{3+}$ Intensifying Screen According to Increase of Tube Voltage", J. Korea Soc. Radiol., Vol. 8, No. 5, pp. 261-264, 2014. https://doi.org/10.7742/jksr.2014.8.5.261
  5. L.H. Brixner, A.W. Sleight, "Crystal growth and precision lattice some -type rare earth tungstates", Mater. Res. Bull. Vol. 8, pp. 1269, 1973. https://doi.org/10.1016/0025-5408(73)90165-7
  6. P.K. Babu, H. Jang, E.S. Kim, L. Shi, H.J. Seo, F.E. Lopez, "Optical Properties and White-Light Emission in $Dy^{3+}$ -Doped Transparent Oxyfluoride Glass and Glass Ceramics Containing $CaF_{2}$ Nano crystals", J. Korea Phys. Soc. Vol. 54, No. 4, April , pp. 1488-1491, 2009. https://doi.org/10.3938/jkps.54.1488
  7. S.H. Kim, "Theromoluminescene Properties of $Li_{6}Gd(BO_{3})_{3}:Ce^{3+}$ Scintillation Single Crystal", J. Korea Soc. Radiol., Vol. 8, No. 7, pp. 455-459, 2014. https://doi.org/10.7742/jksr.2014.8.7.455
  8. R. Borja-Urbya, L.A. Diaz-Torres, P. Salas, "Strong broad green UV-excited photoluminescence in rare earth (RE= Ce, Eu, Dy, Er, Yb) doped barium zirconate", Materials Science Vol. 176, pp. 1388-1392, 2011.
  9. M. Yoshimura and A Rouanet, "Rapid quenching of melts in the system La $La_{2}O_{3}-WO_{3} $", J. Materials Science Vol. 12, pp. 415-417, 1976.
  10. V.K. Yanoskii, V.I. Voronkova, "Ab-initio structure determination of ${\beta}-La_{2}WO_{6}$", J. Solid State Chemistry Vol. 182, pp. 209-214, 2009. https://doi.org/10.1016/j.jssc.2008.09.010
  11. M. Ivanova, G.M. Balagina and Rode Eya, Izv AN, "Phase diagram of the $La_{2}O_{3}-WO_{3}$ system", Materials Science. Vol. 6, pp. 914-919, 1970.
  12. C.A. Kodaira, F.H. Brit and M.C.F.C. Felinto, "Luminescence investigation of $Eu^{3+}$ ion in the $RE_{2}(WO_{4})_{3}$ matrix (RE=La and Gd) produced using the Pechini method", J. solid state chem. Vol. 171, pp. 401-407, 2003. https://doi.org/10.1016/S0022-4596(02)00221-9
  13. H. Jinping, L. Hongshan, Z. Pingle, Y. Xibin and L. Yikang, "Synthesis and luminescent properties of $Y_{6}W_{2}O_{15}:Eu^{3+}$ phosphors", J. lumin. Vol. 126, pp. 881-885, 2007. https://doi.org/10.1016/j.jlumin.2007.01.004
  14. M.H Chambrier, R.M. Ibberson and F. Goutenoire, "Structure determination of ${\alpha}-La_{6}W_{2}O_{15}$", J. Solid State chem. Vol. 183, pp. 1297-1302, 2010. https://doi.org/10.1016/j.jssc.2010.03.043

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