College of chemistry and chemical engineering, Inner Mongolia University, Hohhot 010021, People's Republic of China.
J Fluoresc. 2010 Mar;20(2):453-61. doi: 10.1007/s10895-009-0567-7.
Two novel ternary rare-earth complexes SmL(5).L'.(ClO(4))(2).7H(2)O and EuL(5).L'.(ClO(4))(2).6H(2)O (the first ligand L = C(6)H(5)COCH(2)SOCH(2)COC(6)H(5), the second ligand L' = C(6)H(4)OHCOO(-)) were synthesized and characterized by element analysis, molar conductivity, coordination titration analysis, IR, TG-DSC, (1)HNMR and UV spectra. The detailed luminescence studies on the rare-earth complexes showed that the ternary rare-earth complexes presented stronger fluorescence intensities, longer lifetimes, and higher fluorescence quantum efficiencies than the binary rare-earth materials. After the introduction of the second ligand salicylic acid group, the relative emission intensities and fluorescence lifetimes of the ternary complexes LnL(5).L'.(ClO(4))(2).nH(2)O (Ln = Sm, Eu; n=7, 6) enhanced more obviously than the binary complexes LnL(5).(ClO(4))(3).2H(2)O. This indicated that the presence of both organic ligand bis(benzoylmethyl) sulfoxide and the second ligand salicylic acid could sensitize fluorescence intensities of rare-earth ions, and the introduction of salicylic acid group was a benefit for the fluorescence properties of the ternary rare-earth complexes. The fluorescence spectra, fluorescence lifetime and phosphorescence spectra were also discussed.
两种新型三元稀土配合物 SmL(5).L'.(ClO(4))(2).7H(2)O 和 EuL(5).L'.(ClO(4))(2).6H(2)O(第一个配体 L = C(6)H(5)COCH(2)SOCH(2)COC(6)H(5),第二个配体 L' = C(6)H(4)OHCOO(-))被合成并通过元素分析、摩尔电导率、配位滴定分析、IR、TG-DSC、(1)HNMR 和 UV 光谱进行了表征。对稀土配合物的详细发光研究表明,三元稀土配合物呈现出比二元稀土材料更强的荧光强度、更长的寿命和更高的荧光量子效率。在引入第二个配体水杨酸基团后,三元配合物 LnL(5).L'.(ClO(4))(2).nH(2)O(Ln = Sm,Eu;n=7,6)的相对发射强度和荧光寿命比二元配合物 LnL(5).(ClO(4))(3).2H(2)O 增强得更明显。这表明,两种有机配体双(苯甲酰基)亚砜和第二个配体水杨酸的存在都可以敏化稀土离子的荧光强度,而水杨酸基团的引入有利于三元稀土配合物的荧光性能。还讨论了荧光光谱、荧光寿命和磷光光谱。