首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Electrochemical olefin epoxidation employing an iron(IV)porphyrin/trisbipyridineruthenium(III) polymer catalyst
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Electrochemical olefin epoxidation employing an iron(IV)porphyrin/trisbipyridineruthenium(III) polymer catalyst

机译:使用铁(IV)卟啉/三联吡啶钌(III)聚合物催化剂进行电化学烯烃环氧化

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摘要

A porphyrin molecule containing four meso-appended 2,2'-bipyridyl ligands has been prepared. Each bipyridine is attached to the porphyrin core at the 4-position (pseudo-para to one of the pyridine nitrogens). Subsequently, each of the four bipyridines was complexed with a RuL22+ moiety and iron coordinated in the porphyrin core. When L = 4-vinyl-4'-methyl-2,2'-bipyridine, reduction of the ruthenium centers resulted in the formation of robust electroactive polymer films which deposited on the electrode surface. In the presence of aqueous acid, these films electrocatalytically epoxidize cyclohexene at positive potentials from the formal iron(IV) oxidation state. Although product analysis has only been conducted for cyclohexene, the catalytic activity extends to a large variety of olefins including ethylene and propylene.
机译:制备了含有四个内消旋附加的2,2'-联吡啶基配体的卟啉分子。每个联吡啶在4-位(吡啶氮之一的假对位)连接至卟啉核心。随后,将四个联吡啶中的每一个与RuL22 +部分复合并在卟啉核心中配位铁。当L = 4-乙烯基-4′-甲基-2,2′-联吡啶时,钌中心的还原导致形成牢固的电活性聚合物膜,其沉积在电极表面上。在酸水溶液的存在下,这些膜以正电势从形式铁(IV)氧化态电催化环己烯环氧化。尽管仅对环己烯进行了产物分析,但催化活性扩展到包括烯烃和丙烯在内的多种烯烃。

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