现代显示, 2010, 21 (12): 20, 网络出版: 2010-12-13  

含氮杂菲类中性配体的铕配合物电致发光研究

Research of Electroluminescent Properties of Eu Complexes with Azatriphenylenes
作者单位
1 福州大学物理与信息工程学院, 福建 福州 350002
2 中国科学院长春光学精密机械与物理研究所激发态物理重点实验室, 吉林 长春 130033
引用该论文

辛琦, 姚剑敏, 李文连, 郭太良. 含氮杂菲类中性配体的铕配合物电致发光研究[J]. 现代显示, 2010, 21(12): 20.

XIN Qi, YAO Jian-min, LI Wen-lian, GUO Tai-liang. Research of Electroluminescent Properties of Eu Complexes with Azatriphenylenes[J]. ADVANCED DISPLAY, 2010, 21(12): 20.

参考文献

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[3] P. P. Sun, J. P. Duan, H. T. Shih, C.H. Cheng. Europium complex as a highly efficient red emitter in electroluminescent devices[J]. Appl. Phys. Lett. 2002, 81, 792.

[4] X. H. Zhou, B. H. Ye, H. Li, et al. Mono-and binuclear ruthenium (II) complexes containing a new asymmetric ligand 3-(pyrazin-2-yl-as-triazino[5,6-f]1,10- phenanth- roline: synthesis, characterization and DNA-binding properties[J]. J. Chem. Soc. Dalton Trans, 1999, 1423.

[5] . Huang, K. Z. Huang, C. H. Huang, F. Y. Li, Y. L. Huang. Bright red electroluminescent devices using novel second-ligand-contained europium complexes as emitting layers[J]. J. Mater. Chem., 2001, 11: 790-793.

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[7] . H. Bakker, M. Goes, N. Hoebe, H. J. van Ramesdonk, J. W. Verhoeven. Luminescent materials and devices: lanthanide azatriphenylene complexes and electroluminescent charge transfer systems[J]. Coord. Chem. Rev., 2000, 208: 3.

[8] . I. Klink, G. A. Hebbink, L. J. Grave. Synergistic complexation of Eu3+ by a polydentate ligand and a bidentate antenna to obtain ternary complexes with high luminescence quqntum yields[J]. J. Phys. Chem. A, 2002, 106: 3685-3697.

辛琦, 姚剑敏, 李文连, 郭太良. 含氮杂菲类中性配体的铕配合物电致发光研究[J]. 现代显示, 2010, 21(12): 20. XIN Qi, YAO Jian-min, LI Wen-lian, GUO Tai-liang. Research of Electroluminescent Properties of Eu Complexes with Azatriphenylenes[J]. ADVANCED DISPLAY, 2010, 21(12): 20.

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