JIN Ye, QIN Wei-ping, ZHANG Ji-sen, WANG Yan, CAO Chun-yan, ZHANG Ji-shuang, REN Xin-guang, ZHU Pei-fen, WEI Guo-dong, WANG Li-li, WANG Guo-feng. Photoluminescence Properties of La<sub>3</sub>PO<sub>7</sub>:Eu<sup>3+</sup> Nanoparticles Synthesized by a Combustion Method[J]. Chinese Journal of Luminescence, 2007,28(2): 214-218
JIN Ye, QIN Wei-ping, ZHANG Ji-sen, WANG Yan, CAO Chun-yan, ZHANG Ji-shuang, REN Xin-guang, ZHU Pei-fen, WEI Guo-dong, WANG Li-li, WANG Guo-feng. Photoluminescence Properties of La<sub>3</sub>PO<sub>7</sub>:Eu<sup>3+</sup> Nanoparticles Synthesized by a Combustion Method[J]. Chinese Journal of Luminescence, 2007,28(2): 214-218DOI:
Photoluminescence Properties of La3PO7:Eu3+ Nanoparticles Synthesized by a Combustion Method
) nanoparticles were synthesized by a straightforward combustion method. The synthesis procedure is similar to that of preparing oxide nanomaterials by the combustion method
but here (NH
4
)
2
HPO
4
is used in producing phosphate nanoparticles. Firstly
La(NO
3
)
3
was prepared by putting appropriate molar rate La
2
O
3
(1.5mmol) and Eu
2
O
3
into the thin HNO
3
stirring to a transparent solution. Excess water was evaporated and made it condensed while heating to obtain the solid La(NO
3
)
3
. Then
put into 10mL thin HNO
3
. At the same time
0.1321g (NH
4
)
2
HPO
4
and 0.2703g Glycine were dissolved in deioned water (10mL). Thirdly
the solution of (NH
4
)
2
HPO
4
and glycine were added into that of the La(NO
3
)
3
with vigorous stirring. The precursor solution was formed. Then
the precursor solution was heated until the white foam was obtained. The reaction took place in a few minutes and all the reactions happened in a wide-mouth beaker. A monoclinic lattice was verified in them by the investigation of X-ray diffraction (XRD). In the emission spectra of Eu
3+
the
5
D
0
7
F
0
transition is often observed when Eu
3+
is in low site symmetry because it is forbidden based on the group theory. The
5
D
0
7
F
1
transition is parity-allowed magnetic dipole transition
which is slightly affected by the symmetry of the Eu
3+
site. The
5
D
0
7
F
2
transition is a parity forbidden electric dipole transition and strong emission only occurs in a non-inversion symmetry site. Under 254nm excitation
La
3
PO
7
:Eu
3+
nanoparticles emitted mainly red fluorescence
assigned to the
5
D
0
7
F
2
transition of Eu
3+
ions and revealed the Eu
3+
ions occupied asymmetric sites in the oxyphosphate host. After annealing at different temperatures from 400℃ to 1200℃
we found that the higher the annealing temperature
the better the samples crystallized and the bigger the intensity ratio of I(
5
D
0
-
7
F
2
)/I(
5
D
0
-
7
F
1
). In comparison with LaPO
4
:Eu
3+
an orange phosphor with stronger
5
D
0
7
F
1
emission
La
3
PO
7
:Eu
3+
has prominent red luminescence under the same excitation and maybe become a promising red phosphor for PDPs and Hg-free fluorescent lamp in the future.