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1. 内蒙古大学 化学化工学院, 内蒙古 呼和浩特 010021
2. Wuppertal Uniuersity, Wupertal 42119, Germany
收稿日期:2009-01-25,
修回日期:1900-01-02,
网络出版日期:2009-10-30,
纸质出版日期:2009-10-30
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王 艳, 赵永亮, 高德青, 等. RE(POA)3phen配合物的合成、表征及荧光性能[J]. 发光学报, 2009,30(5):663-667.
WANG Yan, ZHAO Yong-liang, GAO De-qing, et al. Synthesis, Structure Characterization and Fluorescence Properties of the Solid Complexes of Rare Earth with 1,10-Phenanthroline and Phenoxyacetic Acid[J]. Chinese journal of luminescence, 2009, 30(5): 663-667.
王 艳, 赵永亮, 高德青, 等. RE(POA)3phen配合物的合成、表征及荧光性能[J]. 发光学报, 2009,30(5):663-667. DOI:
WANG Yan, ZHAO Yong-liang, GAO De-qing, et al. Synthesis, Structure Characterization and Fluorescence Properties of the Solid Complexes of Rare Earth with 1,10-Phenanthroline and Phenoxyacetic Acid[J]. Chinese journal of luminescence, 2009, 30(5): 663-667. DOI:
合成了以稀土离子Sm
3+
、Eu
3+
、Tb
3+
、Dy
3+
及Tb
3+
为发光中心
以苯氧乙酸(HPOA)和邻菲罗啉(phen)为配体
掺杂La
3+
、Gd
3+
、 Y
3+
的7种稀土配合物
对配合物进行了C、H、N元素分析、稀土络合滴定、红外光谱、紫外光谱和发光光谱的研究。结果表明配合物的组成分别为SmL
3
L'·1/2H
2
O
EuL
3
L'·1/2H
2
O
TbL
3
L'· 1/2H
2
O
DyL
3
L'·1/2H
2
O
掺杂配合物组成分别为Tb
0.5
Gd
0.5
L
3
L'·1/2H
2
O
Tb
0.5
Y
0.5
L
3
L'·1/2H
2
O
Tb
0.5
La
0.5
L
3
L'·1/2H
2
O(L=C
6
H
5
OCH
2
COO
-
L'=phen)。配合物中的稀土离子与苯氧乙酸中羧基的一个氧原子和苯氧基的氧原子配位
与邻菲罗啉中的两个氮原子配位成键;荧光光谱表明
铽三元配合物的发射强度要远大于其它三元配合物的发光强度
掺杂发光惰性稀土离子La
3+
、Gd
3+
、Y
3+
的铽配合物中
Y
3+
掺杂配合物的发光强度有所增强。
Seven complexes of rare earth (
Ln
=Sm
Eu
Tb
Dy)and Tb
3+
doped with
RE
3+
(La
3+
Gd
3+
Y
3+
)with phenoxyacetic acid ( HPOA ) and 1
10-phenanthroline were synthesized. Their elemental analysis and rare earth complexometic titration were determined
the results showed that the chemical formulas were SmL
3
L'·1/2H
2
O
EuL
3
L'·1/2H
2
O
TbL
3
L'· 1/2H
2
O
DyL
3
L'·1/2H
2
O
Tb
0.5
Gd
0.5
L
3
L'·1/2H
2
O
Tb
0.5
Y
0.5
L
3
L'·1/2H
2
O
Tb
0.5
La
0.5
L
3
L'·1/2H
2
O(L=C
6
H
5
OCH
2
COO
-
L'=phen).IR spectra
UV spectra and fluorescence spectra were studied. The results indicated that the rare earth ions are bounded with the oxygen atoms of phenoxyacetic acid and phenoxy
and with the N atoms of 1
10-phenanthroline. Fluorescence spectra of the complexes are determined at room temperature
the terbium complex showed that there is a characteristic excitation peak
which is a wide band from 280 to 380 nm
and a maximum peak at 331 nm. For europium complex
the band is from 280 to 370 nm and with a maximum peak at 348 nm.For dysprosium and samarium complexes
the bands are from 290 to 350 nm and 320 to 370 nm
the maximum peaks at 333 nm and 354 nm
respectively.The characteristic excitation peaks are assigned to the ligands metal energy transfer band. So
331
348
333 and 354 nm were chosen as excitation wavelength to measure the fluorescence spectra of terbium
europium
dysprosium and samarium complexes
respectively. The intensity of terbium complex is the strongest
europium complex is second and samarium is the weakest.It was shown that the lowest excitation state energy level of Tb
3+
ion matches well with the triplet state energy of the ligand phenoxyacetic acid and phenanthroline each other
the absorbing energy of the ligands may effectively transferred to Tb
3+
ion. The fluorescence intensity of terbium complex is enhanced after doping Y
3+
ion.
. Silva F R G, Menezes J F S, Rocha G B, et al. Emission quantum yield of europium (Ⅲ) mixed complexes with thenoyltrifluoroacetonate and some aromatic ligands [J]. J. Alloys and Compounds, 2000, 303-304 :364-370.
. Hnatejko Z, Embanowski M. Complexation, luminescence and energy transfer of Ln (Ⅲ) ions with phenylphosphonic acid [J]. J. Alloys and Compounds, 2004, 380 (1-2):181-185.
. Wang Xigui, Wu Hongying, Yao Guangqing, et al. Study on the transition of green yellow fluorescence of ternary complexes of Tb-benzoic acid-1,10-phenanthroline [J]. Spectroscopy and Spectral Analysis (光谱学与光谱分析), 2004, 24 (6):708-712 ( in Chinese).
. Zhao Yongliang, Zhao Fengying. Synthesis and luminescence of complexes EuxY1-x ( phen)L3 [J]. J. Rare Earths, 2002, 20 (5):427-429.
. Xu Lijuan, Wang Ruifen, Zhao Na, et al. Synthesis and properties of ternary terbium complexes with halogen-benzoic acid and 1,10-phenanthroline [J]. Chin. J. Lumin. (发光学报), 2007, 28 (6):781-787 (in Chinese).
. Wang Lianmeng, Zhao Yongliang, Zhou Yongsheng, et al. Synthesis, characterization and photoluminescence properties of (EuxRE1-x)(FTFA)3phen complexes [J]. Chin. J. Lumin. (发光学报), 2008, 29 (6):1086-1090 (in Chinese).
. Zhang Lixia, Liang Lifang, Mo Yijuan. Characterization of rare earth complexes with phenoxyacetic acid and their effect on plant Pb,Cd pollution [J]. Chin. Rare Earths (稀土), 2006, 27 (4):66-69 (in Chinese).
. Wu Huixia, Xin Chiyang, Sun Junyan, et al. Syntheses and photoluminescence properties of Dy3+-acetylacetone-1,10-phenanthroline ternary complexes doped with rare earth ions [J]. Chin. J. Lumin. (发光学报), 2006, 27 (2):270-274 (in Chinese).
. Wen Xiaochun, Zhao Yongliang. Infrared spectra and fluorescence property of calcium, barium and europium-benzoate complexes [J]. Chin. J. Lumin.(发光学报), 2005, 26 (6):799-803 (in Chinese).
. Satos, Wada M. Relation between intramolecular energy transfer efficiencies and triplet state energies in rare earth β-diketone chelates [J]. Bull. Chem. Soc. Jpn., 1970, 43 (7):1955-1962.
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