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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Intervalence, electron transfer and redox properties of a triazolate-bridged ruthenium-polypyridine dinuclear complex
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Intervalence, electron transfer and redox properties of a triazolate-bridged ruthenium-polypyridine dinuclear complex

机译:三唑桥联钌-聚吡啶二核配合物的间隔,电子转移和氧化还原性质

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摘要

A new dinuclear complex of the type cis, cis [(bpy)(2)ClRu(mu-L-b)RuCl(bpy)(2)](n+) (bpy = 2,2'-bipyridine; L-b = benzotriazolate (bta); n = 1, 2, or 3) has been synthesized, isolated as a PF6- salt, and investigated in organic solutions by means of cyclic voltammetry and ultraviolet/visibleear-infrared spectroelectrochemistry. Particular emphasis has been given to the electron transfer (ET) properties of the mixed-valent species (n = 2), which displays a somewhat large metal-metal electronic coupling in the ground state with the complex featuring localized Ru(III) and Ru(II) oxidation states, as deduced from its intervalence charge-transfer (IVCT) band and electrochemical parameters. Analysis of the IVCT properties in the context of Hush's theory also supports a valence-trapped formulation. In spite of the class II categorization within the Robin-Day scheme, this system shows a remarkable intermetallic communication when compared with other analogues (e.g. Lb = pyrazine). Such aspect has also been stressed by comparison of the set of thermodynamic and mixed-valence parameters along with a series of L-bridged systems studied previously in aqueous solutions (in particular, [(edta)Ru(mu-bta)Ru(edta)](4-); edta = ethylenediamine-N,N,N',N'-tetraacetate), and the striking differences in their intervalence characteristics have been rationalized in terms of distinct types of electronic and structural effects. Despite the contrasting behavior, the same type of superexchange mechanism ('hole-transfer') seems to prevail in all these benzotriazolate-bridged mixed-valent species. In the 2,2'-bipyridine derivative, the synergistic charge-transfer effects are the most relevant factors on the great stabilization of the mixed-valence state. The combined pi-acceptor and sigma,pi-donor abilities of the ancillary (bpy) and bridging (bta) ligands, respectively, are also responsible for the high stability of the fully oxidized (Ru-III-L-Ru-III) and fully reduced (Ru-II-L-Ru-II) isovalent species. From the IVCT band features, the rate of intramolecular thermal ET for the mixed-valent ion was estimated on the basis of the Hush and Marcus theories. (C) 2003 Elsevier Science Ltd. All rights reserved. [References: 75]
机译:顺式[[bpy)(2)ClRu(mu-Lb)RuCl(bpy)(2)](n +)类型的新双核配合物(bpy = 2,2'-联吡啶; Lb =苯并三唑酸酯(bta) ; n = 1、2或3)已合成,分离为PF6-盐,并通过循环伏安法和紫外/可见/近红外光谱电化学方法在有机溶液中进行了研究。特别强调了混合价物质(n = 2)的电子转移(ET)特性,该化合物在基态下表现出较大的金属-金属电子耦合,且复合物具有局部Ru(III)和Ru (II)氧化态,由其间隔电荷转移(IVCT)带和电化学参数推导得出。在Hush理论的背景下对IVCT特性的分析也支持价数表述。尽管在Robin-Robin Day方案中进行了II类分类,但与其他类似物(例如Lb =吡嗪)相比,该系统仍显示出显着的金属间通信。通过比较一组热力学参数和混合价参数以及一系列先前在水溶液中研究过的L桥系统(特别是[[edta] Ru(mu-bta)Ru(edta) ](4-); edta =乙二胺-N,N,N',N'-四乙酸酯),其间隔特征的显着差异已根据不同类型的电子和结构效应得到了合理化。尽管有相反的行为,但所有这些苯并三唑桥连的混合价物种似乎都占据着相同类型的超交换机制(“空穴转移”)。在2,2'-联吡啶衍生物中,协同电荷转移效应是影响混合价态稳定的最重要因素。辅助(bpy)和桥接(bta)配体的pi-受体和spi,pi-供体的组合能力也分别负责完全氧化的(Ru-III-L-Ru-III)和完全还原的(Ru-II-L-Ru-II)等价物质。从IVCT带特征,基于Hush和Marcus理论估计了混合价离子的分子内热ET的速率。 (C)2003 Elsevier ScienceLtd。保留所有权利。 [参考:75]

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