Spectra Characteristics of Dy3+ and Tm3+ Co-doped Yttrium Phosphate-vanadate Phosphor Prepared by Coprecipitation Reaction
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Spectra Characteristics of Dy3+ and Tm3+ Co-doped Yttrium Phosphate-vanadate Phosphor Prepared by Coprecipitation Reaction
Chinese Journal of LuminescenceVol. 26, Issue 3, Pages: 354-358(2005)
作者机构:
1. 中国科学院, 激发态重点实验室, 吉林, 长春, 130033
2. 中国科学院研究生院, 北京, 100039
3. 江西南方稀土高技术股份有限公司, 江西, 赣州, 341000
4. 中国科学技术大学, 安徽, 合肥, 230026
作者简介:
基金信息:
DOI:
CLC:O482.31
Published:20 May 2005,
Received:25 August 2004,
Revised:24 November 2004,
稿件说明:
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LAI HUA-SHENG, CHEN BAO-JIU, XU WU, et al. Spectra Characteristics of Dy3+ and Tm3+ Co-doped Yttrium Phosphate-vanadate Phosphor Prepared by Coprecipitation Reaction. [J]. Chinese journal of luminescence, 2005, 26(3): 354-358.
DOI:
LAI HUA-SHENG, CHEN BAO-JIU, XU WU, et al. Spectra Characteristics of Dy3+ and Tm3+ Co-doped Yttrium Phosphate-vanadate Phosphor Prepared by Coprecipitation Reaction. [J]. Chinese journal of luminescence, 2005, 26(3): 354-358.DOI:
Spectra Characteristics of Dy3+ and Tm3+ Co-doped Yttrium Phosphate-vanadate Phosphor Prepared by Coprecipitation Reaction
Two dominant bands appear in the emission spectrum of Dy
3+
. The yellow band (575 nm) comes from to the transition
4
F
9/2
6
H
13/2
and the blue band (475 nm) corresponds to the transition
4
F
9/2
6
H
15/2
. According to our former results
two emission peaks were observed in Tm
3+
doped yttrium phosphate-vanadate phosphors
the narrow one at 475 nm originates from the Tm
3+
ion transition
1
G
4
3
H
6
and the weak broad-band around 430 nm belongs to VO
4
3-
group. As we know
at a suitable yellow-to-blue intensity ratio
phosphor will emit white light. So yttrium phosphate-vanadate co-doped with Dy
3+
and Tm
3+
may be used as potential two-band phosphors.On the contrary to conventional methods
aerosol synthesis technique has been employed successfully to prepared phosphor particles with good morphology and uniformity of low concentration dopant in recent years. By coprecipitation reaction
high quality YP
1-x
V
x
O
4
:Dy
3+
Tm
3+
phosphor was prepared. The phosphor was characterized by XRD
SEM
and photoluminescence under UV excitation. The XRD patterns disclosed that the obtained YP
1-x
V
x
O
4
:Dy
3+
Tm
3+
is a compound. The SEM image showed that the size of the phosphor particles is uniform and submicron. The fine particle white emitting phosphors has a strong emission peak around 480 nm which is attributed to the emission from
1
G
4
to
3
H
6
of Tm
3+
and the(
4
F
9/2
6
H
15/2
) transition of Dy
3+
another strong emission around 576 nm originating from the Dy
3+
transition
4
F
9/2
6
H
13/2
and a weak emission peak around 660 nm attributing to Tm
3+
transition
1
G
4
3
H
4
. It is expected that YP
1-x
V
x
O
4
:Dy
3+
Tm
3+
would be a promising two-band phosphors for high pressure mercury lamps (HPML).
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Related Institution
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