TY - JOUR
T1 - Enhanced luminescence of Dy3+/Bi3+ co-doped Gd3Al5O12 phosphors by high-efficiency energy transfer
AU - Tian, Lu
AU - Wang, Lixi
AU - Zhang, Le
AU - Zhang, Qitu
AU - Ding, Wenhao
AU - Yu, Mingxun
N1 - Publisher Copyright:
© 2015, Springer Science+Business Media New York.
PY - 2015/11/1
Y1 - 2015/11/1
N2 - Series samples of Dy3+/Bi3+ co-doped Gd3Al5O12 phosphors were successfully prepared by sol–gel combustion method. The phase composition, morphology and luminescence properties were investigated by X-ray diffraction, scanning electron microscope, photoluminescence, UV–Vis diffuse reflectance spectra, and fluorescent decay curves. Dy3+–Bi3+ co-doping had no significant effect on the host lattice of Gd3Al5O12 (GAG). The quenching concentration of Dy3+ in Gd3-xAl5O12:xDy3+ was determined to be 6.0 mol% (x = 0.06). At the optimal Dy3+ content of 6.0 mol%, the emission intensity of Dy3+ was greatly enhanced by Bi3+ co-doping. The incorporation of Bi3+ in GAG sample well improved the emission intensity of Dy3+ through the energy transfer from Bi3+ to Dy3+. The optimized composition was determined to be Gd2.895Al5O12:0.06Dy3+, 0.045Bi3+. The chromaticity coordinate shifted to green edge area after co-doping Bi3+ in GAG:Dy3+ phosphors. The enhanced intensity and tuned luminous color of Dy3+/Bi3+ co-doped GAG phosphors provided a promising application in white light emitting diodes (WLEDs), scintillation and some other optical fields.
AB - Series samples of Dy3+/Bi3+ co-doped Gd3Al5O12 phosphors were successfully prepared by sol–gel combustion method. The phase composition, morphology and luminescence properties were investigated by X-ray diffraction, scanning electron microscope, photoluminescence, UV–Vis diffuse reflectance spectra, and fluorescent decay curves. Dy3+–Bi3+ co-doping had no significant effect on the host lattice of Gd3Al5O12 (GAG). The quenching concentration of Dy3+ in Gd3-xAl5O12:xDy3+ was determined to be 6.0 mol% (x = 0.06). At the optimal Dy3+ content of 6.0 mol%, the emission intensity of Dy3+ was greatly enhanced by Bi3+ co-doping. The incorporation of Bi3+ in GAG sample well improved the emission intensity of Dy3+ through the energy transfer from Bi3+ to Dy3+. The optimized composition was determined to be Gd2.895Al5O12:0.06Dy3+, 0.045Bi3+. The chromaticity coordinate shifted to green edge area after co-doping Bi3+ in GAG:Dy3+ phosphors. The enhanced intensity and tuned luminous color of Dy3+/Bi3+ co-doped GAG phosphors provided a promising application in white light emitting diodes (WLEDs), scintillation and some other optical fields.
UR - http://www.scopus.com/inward/record.url?scp=84943350244&partnerID=8YFLogxK
U2 - 10.1007/s10854-015-3522-1
DO - 10.1007/s10854-015-3522-1
M3 - 文章
AN - SCOPUS:84943350244
SN - 0957-4522
VL - 26
SP - 8507
EP - 8514
JO - Journal of Materials Science: Materials in Electronics
JF - Journal of Materials Science: Materials in Electronics
IS - 11
ER -