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高效双金属钌三联吡啶配合物的合成及电化学发光性能。

Synthesis and ECL performance of highly efficient bimetallic ruthenium tris-bipyridyl complexes.

机构信息

State Key Laboratory of Fine Chemicals, Dalian University of Technology, E 224 West Campus, No. 2, Linggonglu, Gangjingzi District, 116024 Dalian, China.

出版信息

Dalton Trans. 2012 Oct 28;41(40):12434-8. doi: 10.1039/c2dt31603j.

Abstract

In order to find the ideal carbon chain linkage number n for achieving the highest ECL in bimetallic ruthenium tris-bipyridyl complexes, a series of novel complexes (bpy)(2)Ru(bpy')(CH(2))(n)(bpy')Ru(bpy)(2) (, where bpy is 2,2'-bipyridyl, n = 10, 12, 14) for a coreactant electrochemiluminescence (ECL) system have been synthesized. Their ECL properties at a Au electrode have been studied in 0.1 M phosphate buffer by using tripropylamine (TPrA), 2-(dibutylamino)ethanol (DBAE) and melamine as the coreactant, to compare with that of the previously reported bimetallic ruthenium analogous complex (bpy)(2)Ru(bpy')(CH(2))(8)(bpy')Ru(bpy)(2). The results demonstrate that the ECL intensity depends largely on the length of the saturated carbon chain linkage number n. The highest ECL is reached when n = 10, suggesting that a synergistic effect on ECL enhancement co-exists between the two intramolecular linked ruthenium activating centers. Density functional theory (DFT) calculation demonstrated that the optimized bond distances between Ru and N(bpy') are the longest both in the ground and the excited triplet states in the case of n = 10, while those for Ru and N(bpy) are the shortest in the excited triplet states. All these factors may be responsible for the above mentioned results. This study provided a methodology to further improve and tune ECL efficiency by using bimetallic ruthenium complexes linked by a flexible saturated carbon chain.

摘要

为了找到实现双金属钌三吡啶联吡啶配合物最高电致化学发光(ECL)的理想碳链连接数 n,我们合成了一系列新型配合物(bpy)(2)Ru(bpy')(CH(2))(n)(bpy')Ru(bpy)(2)(,其中 bpy 是 2,2'-联吡啶,n = 10、12、14)作为共反应物电化学发光(ECL)体系。我们在 0.1 M 磷酸盐缓冲液中,使用三丙胺(TPrA)、2-(二丁氨基)乙醇(DBAE)和三聚氰胺作为共反应物,在 Au 电极上研究了它们的 ECL 性质,并与之前报道的双金属钌类似配合物(bpy)(2)Ru(bpy')(CH(2))(8)(bpy')Ru(bpy)(2)进行了比较。结果表明,ECL 强度在很大程度上取决于饱和碳链连接数 n 的长度。当 n = 10 时,达到最高 ECL,表明两个分子内连接的钌激活中心之间存在协同增强 ECL 的效应。密度泛函理论(DFT)计算表明,在 n = 10 的情况下,在基态和激发三重态中,Ru 与 N(bpy')之间的优化键距离最长,而在激发三重态中,Ru 与 N(bpy)之间的优化键距离最短。所有这些因素可能是导致上述结果的原因。本研究为进一步提高和调整双金属钌配合物通过柔性饱和碳链连接的 ECL 效率提供了一种方法。

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