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The luminescence properties of dysprosium ions in silica xerogel doped with Gd1.6Dy0.4(WO4)3

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Języki publikacji
PL
Abstrakty
EN
The new material consisting of Gd1.6Dy0.4(WO4)3 incorporated into silica xerogel was prepared via the coprecipitation method. The luminescence properties of the studied material were analyzed by means of emission and excitation spectra, including the result of luminescence lifetimes of Dy(III) ion. The enhanced yellow emission due to the excitation energy transfer from WO42- group to Dy(III) ion upon excitation at exc = 240 nm is the main result of this paper.
Czasopismo
Rocznik
Strony
337--344
Opis fizyczny
Bibliogr. 17 poz.
Twórcy
autor
autor
autor
  • Faculty of Chemistry, University of Gdańsk, Sobieskiego 18/19, 80-952 Gdańsk, Poland
Bibliografia
  • [1] BÜNZLI J.-C.G., [In] Lanthanide Probes in Life, Chemical and Earth Sciences, Theory and Practice, [Eds.] J.-C.G. Bünzli, G.R. Choppin, Elsevier, Amsterdam, 1989, p. 219.
  • [2] GROBELNA B., Luminescence based on energy transfer in xerogels doped with Tb2–xEux(WO4 )3, Optica Applicata 38(1), 2008, pp. 39–47.
  • [3] GROBELNA B., SZABELSKI M., KLEDZIK K., KŁONKOWSKI A.M., Luminescent properties of Sm(III) ions in Ln2(WO4 )3 entrapped in silica xerogel, Journal of Non-Crystalline Solids 353(30–31), 2007,pp. 2861–2866.
  • [4] GROBELNA B., BOJARSKI P., Red emission of Eu(III) ions doped gadolinium or lanthanum tungstate entrapped in silica xerogel, Journal of Non-Crystalline Solids 355(45–47), 2009, pp. 2309–2313.
  • [5] GROBELNA B., Luminescence based on energy transfer in xerogels doped with Ln2–xTbx(WO4 )3, Journal of Alloys and Compounds 440(1–2), 2007, pp. 265–269.
  • [6] PISARSKA J., Luminescence behavior of Dy3+ ions in lead borate glasses, Optical Materials 31(12), 2009, pp. 1784–1786.
  • [7] ANILA E.I., JAYARAY M.K., Effect of dysprosium doping on the optical properties of SrS:Dy, Cl phosphor, Journal of Alloys and Compounds 504(1), 2010, pp. 257–260.
  • [8] SAMUEL P., THANGARAJU D., MOORTHY BABU S., Effect of dysprosium active ions on spectral properties of KGW single crystals, Journal of Alloys and Compounds 509(1), 2011, pp. 177–180.
  • [9] PISARSKA J., LISIECKI R., RYBA-ROMANOWSKI W., GORYCZKA T., PISARSKI W.A., Ususual luminescencje behavior of Dy3+-doped lead borate glass after heat treatment, Chemical Physics Letters 489(4–6), 2010, pp. 198–201.
  • [10] JYOTHY P.V., AMRUTHA K.A., XAVIER J., UNNIKRISHNAN N.V., Fluorescence characteristic of Dy3+/CdS nanocrystals doped silica xerogel, Journal of Physics and Chemistry of Solids 70(6), 2009, pp. 927–930.
  • [11] BREDOL M., GUTZOV S., JÜSTEL TH., Highly efficient energy transfer from Ge-related defects to Tb3+ ions in sol–gel-derived glasses, Journal of Non-Crystalline Solids 321(3), 2003, pp. 225–230.
  • [12] BRINKER C.J., SCHERER G.W., Sol–Gel Science. The Physics and Chemistry of Sol–Gel Processing, Acadmic Press, Boston, 1990, Chapter 13.
  • [13] XUYONG YANG, JIE LIU, HONG YANG, XIBIN YU, YUZHU GUO, YONGQIN ZHOU, JIEYU LIU, Synthesis and characterization of new red phosphors for white LED applications, Journal of Materials Chemistry 19(22), 2009, pp. 3771–3774.
  • [14] KUBICKI A.A., BOJARSKI P., GRINBERG M., SADOWNIK M., KUKLIŃSKI B., Time-resolved streak camera system with solid state laser and optical parametric generator in different spectroscopic applications, Optics Communications 263(2), 2006, pp. 275–280.
  • [15] PISARSKA J., LISIECKI R., RYBA-ROMANOWSKI W., DOMINIAK-DZIK G., GORYCZKA T., GROBELNY Ł., PISARSKI W.A., Glass preparation and temperature-induced crystallization in multicomponent B2O3–PbX2–PbO–Al2O3–WO3–Dy2O3 (X = F, Cl, Br) system, Journal of Non-Crystalline Solids 357(3), 2011, pp. 1228–1231.
  • [16] YANLIN HUANG, WENLIANG ZHU, XIQI FENG, YONG DUAN, ZHENYONG MAN, Properties of Dy3+-doped PbWO4 single crystal grown by modified Bridgman method, Journal of Crystal Growth 247(3–4), 2003, pp. 387–392.
  • [17] GROBELNA B., BOJARSKI P., KUKLIŃSKI B., KUBICKI A.A., SYNAK A., Optical properties and luminescence kinetics of Ln1.9Pr0.1(WO4 )3 (where Ln = Gd, La) immobilized in silica xerogel, Optical Materials 34(1), 2011, pp. 103–108.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW7-0023-0019
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