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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Electrochemically driven intramolecular oxidative aromatic coupling as a pathway toward π-extended porphyrins
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Electrochemically driven intramolecular oxidative aromatic coupling as a pathway toward π-extended porphyrins

机译:电化学驱动的分子内氧化芳族偶联作为通往π延伸卟啉的途径

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摘要

A Ni(II) complex of a π-extended porphyrin bearing three mesityl substituents and one electron-rich naphthalene moiety has been prepared via electrochemical oxidation. It was proven that the whole oxidative process starts from electrochemical generation of a radical-cation on the porphyrin core. Electrochemistry and spectroelectrochemistry of both a naphthalenyl-substituted porphyrin and a porphyrin with a fused naphthalenyl group on the π-ring system provide clear distinction between metal-and ring-centered processes. The redox reactivity of the naphthalenyl-substituted metalloporphyrin in nonaqueous media is presented while outlining the most important structural factors which influence the reversible half-wave potentials for oxidation and reduction of this complex and the following chemical reactions which lead to an extended π-system.
机译:通过电化学氧化制备了带有3个异氰酸基取代基和1个富电子的萘部分的π-延伸的卟啉的Ni(II)配合物。事实证明,整个氧化过程始于在卟啉核上电化学生成自由基阳离子。萘基取代的卟啉和在π环系统上带有稠合萘基的卟啉的电化学和光谱电化学都清楚地区分了以金属为中心和以环为中心的过程。提出了萘基取代金属卟啉在非水介质中的氧化还原反应性,同时概述了影响该络合物的氧化和还原的可逆半波电势的最重要的结构因素,以及随后的化学反应,这些化学反应导致了π系统的扩展。

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