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两种钌配合物皮秒发光动力学过程研究
引用本文:徐忠扬,王丽丽,倪泉丰,巢晖,王惠,张蕾,计亮年.两种钌配合物皮秒发光动力学过程研究[J].光学学报,2011(8):293-299.
作者姓名:徐忠扬  王丽丽  倪泉丰  巢晖  王惠  张蕾  计亮年
作者单位:中山大学光电材料与技术国家重点实验室;中山大学化学与化工学院;
基金项目:国家自然科学基金(11004256); 广东省自然科学基金(9351027501000003); 中山大学光电材料与技术国家重点实验室开放课题资助课题
摘    要:采用稳态发光光谱、瞬态发光动力学测量等手段,对两种钉配合物Ru(bpy)3](ClO4)2和Ru(bpy)2 HPIP](ClO4)2的发光性质进行了研究.稳态发光光谱表明Ru(bpy)2 HPIP](ClO4)2发光明显偏弱;皮秒瞬态发光动力学测量显示Ru(bpy)2 HPIP](ClO4)2的激发态弛豫过程...

关 键 词:激光光学  瞬态发光动力学  时间分辨光谱技术  钉配合物  激发态弛豫

Study on Picosecond Luminescence Dynamics of [Ru(bpy)_3](ClO_4)_2 and [Ru(bpy)_2 HPIP](ClO_4)_2
Xu Zhongyang Wang Lili Ni Quanfeng Chao Hui Wang Hui Zhang Lei Ji Liangnian, State Key Laboratory of Optoelectronic Materials , Technologies,Sun Yat-Sen University,Guangzhou,Guangdong ,China Institute of Chemistry , Chemical Engineering,China.Study on Picosecond Luminescence Dynamics of [Ru(bpy)_3](ClO_4)_2 and [Ru(bpy)_2 HPIP](ClO_4)_2[J].Acta Optica Sinica,2011(8):293-299.
Authors:Xu Zhongyang Wang Lili Ni Quanfeng Chao Hui Wang Hui Zhang Lei Ji Liangnian  State Key Laboratory of Optoelectronic Materials  Technologies  Sun Yat-Sen University  Guangzhou  Guangdong  China Institute of Chemistry  Chemical Engineering  China
Institution:Xu Zhongyang1 Wang Lili1 Ni Quanfeng1 Chao Hui2 Wang Hui1 Zhang Lei1 Ji Liangnian1,2 1 State Key Laboratory of Optoelectronic Materials and Technologies,Sun Yat-Sen University,Guangzhou,Guangdong 510275,China2 Institute of Chemistry and Chemical Engineering,China
Abstract:The luminescence properties of two kinds of ruthenium complexes,Ru(bpy)3](ClO4)2 and Ru(bpy)2HPIP](ClO4)2,are studied by steady-state and transient emission spectroscopy.The steady-state luminescence spectrum shows that Ru(bpy)2HPIP](ClO4)2 has a weaker luminescence intensity.And the transient emission spectrum exhibits that there is a fast component within the excited-state relaxation of Ru(bpy)2HPIP](ClO4)2,which may be due to the hydrogen-bonding between metal-ligand-charge-transfer(MLCT) state and s...
Keywords:laser optics  transient luminescence  time-resolved spectroscopy  ruthenium complexes  excited-state relaxation  
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