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Abstrakty
Rare earth (RE) ions play an important role in the improvement of the optical properties of ceramics. Rare-earth ceramics are commonly used in display panels, fluorescent lamps and lasers. The luminescence properties of Magnesium Boro-Tellurite(MBT) Eu3+ and Dy3+ doped ceramics have not been reported before. Therefore, the aim of this paper is to determine the effect of different compositions on the luminescence properties of the MBT material. A series of xTeO2-(70-x)B2O3-30MgOceramics with 10 ≤ x ≤ 40 mol % doped with 1 mol % of Eu3+ and Dy3+ ions was prepared via the solid-state reaction method. The influence of various compositions on the crystalline phase and photoluminescence properties of the samples were investigated by X-ray diffraction (XRD) and luminescence spectroscopy. The crystalline phases obtained in this study are Mg3(BO3)2, MgB4O7, Mg2B2O5, Mg (Te2O5) and MgTe3O6. It was stated that the crystalline phases have not changed as a result of doping with Eu3+ and Dy3+ ions. The emission spectra of Eu3+: MBT ceramics showed strong red emission at 612 nm due to the transition of 5 D0 → 7 F2 and meanwhile, the Dy3+: MBT ceramics showed a blue emission at 480 nm due to 4 F9/2→6H15/2 transition and yellow emission at 576 nm due to 4 F9/2→6H13/2 transition. Both the rare-earth doped phosphors showed bright emission.
Słowa kluczowe
Wydawca
Czasopismo
Rocznik
Tom
Strony
122--125
Opis fizyczny
Bibliogr. 21 poz., rys.
Twórcy
autor
- Phosphor Research Group, Department of Physics, Faculty of Science, Universiti Teknologi Malaysia,UTM Skudai, 81310, Johor Bahru, Malaysia
autor
- Phosphor Research Group, Department of Physics, Faculty of Science, Universiti Teknologi Malaysia,UTM Skudai, 81310, Johor Bahru, Malaysia
autor
- Phosphor Research Group, Department of Physics, Faculty of Science, Universiti Teknologi Malaysia,UTM Skudai, 81310, Johor Bahru, Malaysia
autor
- Ibnu Sina Institute for Fundamental Science Studies, Universiti Teknologi Malaysia, UTM Skudai, 81310, Johor Bahru, Malaysia
Bibliografia
- [1] BLASSE G., GRABMEYER B.C., Luminescence Materials, Springer, Berlin, 1994.
- [2] YANG H.K., CHOI H., MOON B.K., CHOI B., JEONG C.J.H., KIM J.H., KIM K.H., J. Solid State Sci., 12 (2010), 1445.
- [3] YANG H.K., MOON B.K., JEONG J.H., YI S.S., KIM P.S., KIM J.H., J. Korean Phys. Soc., 49 (2006), 365.
- [4] SHIM K.S., JUNG Y.R., MOON B.K., CHOI B.C., JEONG J.H., YI S.S., KIM J.H., J. Korean Phys. Soc., 51 (2007), 1825.
- [5] CHOI S., MOON Y.M., KIM K., JUNG H.K., NAHM S., J. Lumin., 129 (2009), 988.
- [6] XIAO X., LU G., SHEN S., MAO D., GUO Y., WANG Y., Mater. Sci. Eng. B-Adv., 176 (2011), 72.
- [7] JIA G., SONG Y., YANG M., LIU K., ZHENG Y., YOU H., J. Cryst. Growth, 311 (2009), 4213.
- [8] BANDI V.R., GRANDE B.K., JAYASIMHADRI M., JANG K., LEE H.S., YI S.S., JEONG J.H., J. Cryst. Growth, 326 (2011), 120.
- [9] ZHANG R., WANG X., J. Alloy. Compd., 509 (2011), 1197.
- [10] SHINDE K.N., DHOBLE S.J., KUMAR, ANIMESH., Physica B, 406 (2011), 94.
- [11] RATNAM B.V., JAYASIMHADRI M., JANG K., LEE H.S., YI S.S., JEONG J.H., J. Am. Ceram. Soc., 93 (2010), 3857.
- [12] FU C., HU Y., WANG Y., WU H., WANG X., J. Alloy. Compd., 502 (2010), 423.
- [13] CHENG L., LI X., SUN J., ZHONG H., TIAN Y., WAN J., Physica B, 405 (2010), 4457.
- [14] MAHESHVARAN K., MARIMUTHU K., J. Lumin., 132 (2012), 2259.
- [15] RAJU K.V., SAILAJA S., RAJU C.N., REDDY B.S., Spectrochim. Acta A, 79 (2011), 87.
- [16] LI Y.H., ZHAO L., ZHANG Y.M., MA J. J. Rare Earth., 30 (2012), 1196.
- [17] BABU A.M., JAMALAIAH B.C., SUHASINI T., RAO T.S., MOORTHY L.R., J. Solid State Sci., 13 (2011), 574.
- [18] OMKARAM I., VENGALA R.B., BUDDHUDU S., J. Alloy. Compd., 474 (2009), 565.
- [19] MENG F.G., ZHANG X.M., LI H., HYO J.S., J. Rare Earth., 60 (2012), 867.
- [20] RIWOTZKI K., HAASE M., J. Phys. Chem. B, 105 (51) (2001), 12709.
- [21] SABIKOGLU I., J. Alloy. Compd., 556 (2013), 135.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-50bb5206-b87b-43dc-a2db-a0286fdfa927