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铽掺钇配合物[(TbxY1-x)(HL)L'Cl·1/2H2O]的合成及荧光性质研究
引用本文:Wu RQ,Zhao YL,Ma RJ,Lin XM,Sun HJ,Li X,Li HY,Li Y. 铽掺钇配合物[(TbxY1-x)(HL)L'Cl·1/2H2O]的合成及荧光性质研究[J]. 光谱学与光谱分析, 2011, 31(8): 2144-2147
作者姓名:Wu RQ  Zhao YL  Ma RJ  Lin XM  Sun HJ  Li X  Li HY  Li Y
摘    要:以1,3,5-苯三甲酸根(BTC3-)为阴离子配体,1,10邻菲啰啉(phen)为中性配体,以不同摩尔比铽、钇离子为中心体,合成了系列铽掺钇配合物.经C,N,H元素分析,稀土总量络合滴定和铽、钇分量的测定推测配合物的组成为(TbxY1-x)(HL)L'C1·1/2H2O(x=0.10,0.30,0.50,0.70,0....

关 键 词:1,3,5-苯三甲酸  1,10-邻菲啰啉  铽配合物  掺杂

Synthesis and fluorescence properties of the complexes [(Tb(x)Y(1-x)) (HL)L'Cl x 1/2H2O]
Wu Ren-Qimuge,Zhao Yong-Liang,Ma Rui-Jun,Lin Xue-Mei,Sun Hui-Juan,Li Xin,Li Hai-Yan,Li Yuan. Synthesis and fluorescence properties of the complexes [(Tb(x)Y(1-x)) (HL)L'Cl x 1/2H2O][J]. Spectroscopy and Spectral Analysis, 2011, 31(8): 2144-2147
Authors:Wu Ren-Qimuge  Zhao Yong-Liang  Ma Rui-Jun  Lin Xue-Mei  Sun Hui-Juan  Li Xin  Li Hai-Yan  Li Yuan
Affiliation:College of Chemistry and Chemical Engineering, Inner Mongolia University, Huhhot 010021, China. wurengimuge@126.com
Abstract:By replacing a part of terbium ions with yttrium ions using doping method, a series of dinuclear complexes of 1,3,5-benzene tricarboxylic acid (H3BTC) and phenanthroline (phen) with different molar ratios of Tb3+ to Y3+ were synthesized in the present paper. Their elemental analysis, rare earth complexometric titration, molar conductivity, IR spectra and UV spectra were studied, and the contents of terbium and yttrium of three doped complexes were measured by a plasma emission spectrophotometer. Their chemical formula is inferred to be (Tb(x)Y(1-x)) (HL)L'Cl x 1/2H2O (x = 0.10, 0.30, 0.50, 0.70, 0.90, L = BTC3-, L' = phen). The infrared spectra and ultraviolet spectra were determined, the results showed that the rare earth ions are bounded with the oxygen atoms of trimesic acid, and with the nitrogen atoms of phenanthroline. The fluorescence spectra of the complexes were determined at the room temperature (the exit and entrance slits are both 1.5 nm). The fluorescence intensity of terbium doped yttrium complexes is stronger than those of the terbium complex; it was showed that the fluorescence intensity of Tb3+ ion is greatly enhanced by Y3+ ion in the complexes. The fluorescence intensity of (Tb0.7 Y0.3)(HL)L'C1 x 1/2H2O complex is the strongest among the six complexes. The lowest excitation state energy level of Tb3+ ion and the triplet state energy level of the ligands (H3BTC and phen) match well each other, and the absorbing energy of the ligands is effectively transferred to Tb3+ ion.
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