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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >How to elucidate and control the redox sequence in vinylbenzoate and vinylpyridine bridged diruthenium complexes
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How to elucidate and control the redox sequence in vinylbenzoate and vinylpyridine bridged diruthenium complexes

机译:如何阐明和控制乙烯基苯甲酸酯和乙烯基吡啶桥联的钌络合物中的氧化还原序列

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Vinylbenzoate-bridged diruthenium complexes (RHCCH)(CO)(P ~iPr_3)_2Ru(μ-4-OOCC_6H _4-CHCH)RuCl(CO)(P~iPr_3)_2 (R = Ph, 3a or CF_3, 3b) and vinylpyridine-bridged (η~6-p-cymene) Cl_2Ru(μ-NC_5H_4-4-CHCH)RuCl(CO)(P ~iPr_3)_2 (3c) have been prepared from their monoruthenium precursors and investigated with respect to the sequence of the individual redox steps and electron delocalization in their partially and fully oxidized states. Identification of the primary redox sites rests on the trends in redox potentials and the EPR, IR and Vis/NIR signatures of the oxidized radical cations and is correctly reproduced by quantum chemical investigations. Our results indicate that the trifluoropropenyl complex 3b has an inverse FMO level ordering (Ru1-bridge-Ru2 > terminal vinyl-Ru1 site) when compared to its styryl substituted counterpart 3a such that the primary oxidation site in these systems can be tuned by the choice of the terminal alkenyl ligand. It is further shown that the vinylbenzoate bridge is inferior to the vinylpyridine one with regard to charge and spin delocalization at the radical cation level. According to quantum chemical calculations, the doubly oxidized forms of these complexes have triplet diradical ground states and feature two interconnected oxidized vinyl ruthenium subunits.
机译:乙烯基苯甲酸酯桥联的钌络合物(RHCCH)(CO)(P〜iPr_3)_2Ru(μ-4-OOCC_6H_4-CHCH)RuCl(CO)(P〜iPr_3)_2(R = Ph,3a或CF_3,3b)和乙烯基吡啶从它们的单钌前驱体制备了桥联的(η〜6-对-cymene)Cl_2Ru(μ-NC_5H_4-4-CHCH)RuCl(CO)(P〜iPr_3)_2(3c)并就其序列进行了研究单个氧化还原步骤和部分或完全氧化态的电子离域。主要氧化还原位点的识别取决于氧化还原电位的趋势以及氧化自由基阳离子的EPR,IR和Vis / NIR标记,并且可以通过量子化学研究正确地进行复制。我们的结果表明,与苯乙烯基取代的对应物3a相比,三氟丙烯基复合物3b具有相反的FMO能级排序(Ru1-bridge-Ru2>末端乙烯基-Ru1位点),因此可以通过选择调节这些体系中的主要氧化位点链烯基配体的末端。进一步表明,就自由基阳离子水平上的电荷和自旋离域而言,乙烯基苯甲酸酯桥次于乙烯基吡啶桥。根据量子化学计算,这些络合物的双重氧化形式具有三重双自由基基态,并具有两个相互连接的氧化乙烯基钌亚基。

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