Up-conversion of Er super(3+)/Yb super(3+) co-doped transparent glass-ceramics containing Ba sub(2)LaF sub(7) nanocrystals

The up-conversion of Er super(3+)/YU super(3+) co-doped transparent glass-ceramics 50SiO sub(2)-10AlF sub(3)- sub(5)TiO sub(2)-30BaF sub(2)-4LaF sub(3)-0.5ErF sub(3 )-0 .5YbF sub(3) containing Ba sub(2)LaF sub(7) nanocrystals under the changing of heat treatment temperature and time were investigate...

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Veröffentlicht in:Journal of rare earths 2013-09, Vol.31 (9), p.843-848
Hauptverfasser: Ho, Kim Dan, ZHOU, Dacheng, Wang, Rongfei, Tran, Minh Hau, JIAO, Qing, YU, Xue, QIU, Jianbei
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container_end_page 848
container_issue 9
container_start_page 843
container_title Journal of rare earths
container_volume 31
creator Ho, Kim Dan
ZHOU, Dacheng
Wang, Rongfei
Tran, Minh Hau
JIAO, Qing
YU, Xue
QIU, Jianbei
description The up-conversion of Er super(3+)/YU super(3+) co-doped transparent glass-ceramics 50SiO sub(2)-10AlF sub(3)- sub(5)TiO sub(2)-30BaF sub(2)-4LaF sub(3)-0.5ErF sub(3 )-0 .5YbF sub(3) containing Ba sub(2)LaF sub(7) nanocrystals under the changing of heat treatment temperature and time were investigated. The Ba sub(2)LaF sub(7) nanocrystals precipitated from the glass matrix was confirmed by X-ray diffraction (XRD). The structural investigation carried out by XRD and transmission electron microscopy (TEM) evidenced the formation of cubic Ba sub(2)LaF sub(7) nanocrystals with crystal size of about 14 nm. Comparing with the samples before heat treatment, the high efficiency up-conversion emission of Er super(3+)/Yb super(3+) co-doped samples was observed in the glass-ceramics under 980 nm laser diode excitation. The increase in red emission intensity bands was stronger than the green bands when the crystal size increased. The mechanism for the up-conversion process in the glass-ceramics and the reasons for the increase of Er super(3+)/Yb super(3+) co-doped up-conversion intensity after heat treatment were discussed.
doi_str_mv 10.1016/S1002-0721(12)60368-8
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The Ba sub(2)LaF sub(7) nanocrystals precipitated from the glass matrix was confirmed by X-ray diffraction (XRD). The structural investigation carried out by XRD and transmission electron microscopy (TEM) evidenced the formation of cubic Ba sub(2)LaF sub(7) nanocrystals with crystal size of about 14 nm. Comparing with the samples before heat treatment, the high efficiency up-conversion emission of Er super(3+)/Yb super(3+) co-doped samples was observed in the glass-ceramics under 980 nm laser diode excitation. The increase in red emission intensity bands was stronger than the green bands when the crystal size increased. 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source Elsevier ScienceDirect Journals; Alma/SFX Local Collection
subjects Bands
Emission
Glass ceramics
Heat treatment
Nanocrystals
Rare earth metals
Upconversion
X-ray diffraction
title Up-conversion of Er super(3+)/Yb super(3+) co-doped transparent glass-ceramics containing Ba sub(2)LaF sub(7) nanocrystals
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