Kang Jie, Chen Ying-Nan, Wang Ai-Ling, Li Hai-Yan, Qu Yan-Rong, Zhang Hai-Xia, Chu Hai-Bin, Zhao Yong-Liang
College of Chemistry and Chemical Engineering, Inner Mongolia University, Huhhot, China.
Luminescence. 2015 Dec;30(8):1360-6. doi: 10.1002/bio.2906. Epub 2015 Mar 31.
Using 2,4,6-tris-(2-pyridyl)-s-triazine (TPTZ) as a neutral ligand, and p-hydroxybenzoic acid, terephthalic acid and nitrate as anion ligands, five novel europium complexes have been synthesized. These complexes were characterized using elemental analysis, rare earth coordination titrations, UV/vis absorption spectroscopy and infrared spectroscopy. Luminescence spectra, luminescence lifetime and quantum efficiency were investigated and the mechanism discussed in depth. The results show that the complexes have excellent emission intensities, long emission lifetimes and high quantum efficiencies. The superior luminescent properties of the complexes may be because the triplet energy level of the ligands matches well with the lowest excitation state energy level of Eu(3+). Moreover, changing the ratio of the ligands and metal ions leads to different luminescent properties. Among the complexes, Eu2(TPTZ)2(C8H4O4)(NO3)4(C2H5OH)·H2O shows the strongest luminescence intensity, longest emission lifetime and highest quantum efficiency.
以2,4,6-三(2-吡啶基)-s-三嗪(TPTZ)作为中性配体,对羟基苯甲酸、对苯二甲酸和硝酸根作为阴离子配体,合成了五种新型铕配合物。通过元素分析、稀土配位滴定、紫外/可见吸收光谱和红外光谱对这些配合物进行了表征。研究了发光光谱、发光寿命和量子效率,并深入探讨了其机理。结果表明,这些配合物具有优异的发射强度、长发射寿命和高量子效率。配合物优异的发光性能可能是由于配体的三重态能级与Eu(3+)的最低激发态能级匹配良好。此外,改变配体与金属离子的比例会导致不同的发光性能。在这些配合物中,Eu2(TPTZ)2(C8H4O4)(NO3)4(C2H5OH)·H2O表现出最强的发光强度、最长的发射寿命和最高的量子效率。