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首页> 外文期刊>Chemistry: A European journal >Metal-metal bond formation between [n]metallocenophanes: Synthesis and characterisation of a dicarba[2]ruthenocenophanium dimer
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Metal-metal bond formation between [n]metallocenophanes: Synthesis and characterisation of a dicarba[2]ruthenocenophanium dimer

机译:[n]茂金属之间的金属-金属键形成:双卡巴[2]钌烯乙炔二聚体的合成与表征

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摘要

The redox properties of dicarba[2]ruthenocenophane were investigated using cyclic voltammetry (CV), and the results compared to those reported for ruthenocene. In the presence of the weakly-coordinating supporting electrolyte the latter exhibited a partially reversible oxidation wave corresponding to the formation of the ruthenocenium ion. This ruthenocenium ion exists in equilibrium with the metal metal-bonded dimer dication, as demonstrated in situ by voltammetry and NMR spectroscopy experiments. Under identical experimental conditions, CV scans of dicarba[2]ruthenocenophane show that it undergoes an irreversible one-electron oxidation. Bulk anodic electrolysis confirmed the one-electron oxidation of dicarba[2]ruthenocenophane, its exclusive conversion to the single product, and the subsequent quantitative reduction of that product back to dicarba[2]ruthenocenophane. Unlike the highly temperature and concentration-dependent voltammetry of ruthenocene, that of dicarba[2]ruthenocenophane varies little with changes in the medium.
机译:使用循环伏安法(CV)研究了双氨基甲酸[2]钌烯甲酚的氧化还原特性,并将结果与​​钌烯的报道进行了比较。在存在弱配位的支持电解质的情况下,后者表现出部分可逆的氧化波,对应于钌ion离子的形成。如通过伏安法和NMR光谱学实验原位证明,该钌ce离子与金属键合的二聚体离子处于平衡状态。在相同的实验条件下,双卡巴[2]钌十一碳烷的CV扫描显示,它经历了不可逆的单电子氧化。本体阳极电解证实了双卡巴[2]钌烯甲醚的单电子氧化,其排他性转化为单一产物,随后将该产物定量还原为双卡巴[2]钌甲酚。与钌茂金属的高温和浓度依赖性伏安法不同,双卡巴[2]钌茂金属的伏安法随介质的变化而变化很小。

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