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Abstrakty
In this investigation, Eu3+ doped YBO3 phosphors were synthesized by conventional solid state method at 1100°C under atmosphere condition. Meanwhile, different amounts of LiCl, BaCl2 and CaCl32 were used as the flux compounds to modify the morphology of the phosphor particles and also final luminescent properties. It was concluded that even small amounts of fluxes play a vital role in the growth of particles. Then the emission and excitation photoluminescence spectra were measured respectively at λexc = 240 nm and λem = 610 nm and it was found that using 2 wt.% of flux compounds has a significant influence on the emission intensity of YBO3 phosphors.
Słowa kluczowe
Wydawca
Czasopismo
Rocznik
Tom
Strony
780--785
Opis fizyczny
Bibliogr. 20 poz., rys.
Twórcy
autor
- Department of Materials Science and Engineering, Golpayegan University of Technology, Golpayegan, Isfahan, Iran
- rafiaei@gut.ac.ir
Bibliografia
- [1] BOYER D., CHADEYRON G.B., MAHIOU R., CAPERAA C., COUSSEINS J.C., J. Mater. Chem., 9 (1999), 211.
- [2] WEI Z.G., SUN L.D., YAN C.H., Chem. Mater., 15 (2003), 3011.
- [3] KWON I.E., YU B.Y., BAE H.S., HWANG Y.J., KWON T.W., KIM C.H., PYUN C.H., KIM S.J., J. Lumin., 87 – 89 (2000), 1039.
- [4] LOU L., BOYER D., CHADEYRON G.B., BERNSTEIN E., MAHIOU R., MUGNIER J., Opt. Mater., 15 (2000), 1.
- [5] KOIKE J., KOJIMA T., TOYONAGA R., KAGAMI A., HASE T., INAHO S., J. Electrochem. Soc., 126 (1979), 1008.
- [6] LI Z.H., ZENG J.H., CHEN C., LI Y.D., J. Cryst. Growth., 286 (2006), 487.
- [7] BECHTE H., JUSTEL T., GLASER H., WIECHERT D.U., J. Soc. Inf. Display., 10 (2002), 63.
- [8] WEI Z.G., SUN L.D., YAN C.H., J. Phys. Chem. B, 106 (2002), 10610.
- [9] HOSOKAWA S., INOUE M., Chem. Lett., 38 (2009), 1108.
- [10] GHYS J.D., MAURICOT R., CAILLIER B., GUILLOT P., BEAUDETTE T., JIA G.H., TANNER P.A., CHENG B.M., J. Phys. Chem. C., 114 (2010), 6681.
- [11] WANG Y.H., WU C.F., ZHANG J C., Mater. Res. Bull., 41 (2006), 1571.
- [12] PAN Y., WU M., SU Q., J. Phys. Chem. Solids, 65 (2004), 845.
- [13] PAN Y., WU M., SU Q., J. Eur. Ceram. Soc., 22 (2002), 1661.
- [14] LEE H.J., KIM K.P., HONG G.Y., YOO J.S., J. Lumin., 130 (2010), 941.
- [15] TENG X., ZHUANG W., HU Y., ZHAO C., HE H., HUANG X., J. Alloy. Compd., 458 (2008), 446.
- [16] DORR W., ASSMANN H., MAIER G., STEVEN J., Nucl. J. Mater., 81 (1979), 135.
- [17] SHIONOYA S., YEN W.M., HASE T., KAMIYA S., NAKAZAWA E., NARITA K., OHNO K., WEBER M., YAMAMOTO H., Phosphor Handbook, CRC Press, New York, 2000.
- [18] LO C.L., DUH J.G., CHIOU B.S., PENG C.C., OZAWA L., Mater. Chem. Phys., 71 (2001), 179.
- [19] REISFELD R., JORGENSEN C.K., Lasers and Excited States of Rare Earths, Springer Verlag, Berlin – Heidelberg, 1977.
- [20] BALAKRISHNAIAH R., YI S.S., JANG K., LEE H.S., MOON B.K., JEONG J.H., Mater Res. Bull., 46 (2011), 621.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-06253156-eb46-4be9-9559-1cb32dc5e031