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首页> 外文期刊>Pure and Applied Chemistry >Artificial photosynthesis via two-electron conversion:Photochemical oxygenation sensitized by ruthenium porphyrins with water as both electron and oxygen atom donor
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Artificial photosynthesis via two-electron conversion:Photochemical oxygenation sensitized by ruthenium porphyrins with water as both electron and oxygen atom donor

机译:通过两电子转换进行人工光合作用:以水为电子和氧原子供体的卟啉卟啉敏化光化学氧化

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摘要

Recent progress in the field of artificial photosynthesis is reviewed.Among various approaches to oxidizing the water molecule,attention has been focused on the two-electron chemical conversion processes mediated by metallo-porphyrins upon visible light irradiation.Photochemical oxygenation reactions such as the epoxidation of alkenes sensitized by ruthe-nium(II) porphyrins with water as both electron and oxygen atom donor have been found.Ru porphyrin induces highly efficient two-electron oxidation of water with a quantum yield of 60 % to form an epoxide from the alkerie with high selectivity.The water molecule serves as both an efficient electron and oxygen atom donor in the reaction,in which the oxygen atom of water is incorporated in a useful product,i.e.,epoxide.
机译:综述了人工光合作用领域的最新进展。在各种氧化水分子的方法中,注意力集中在金属卟啉在可见光照射下介导的两电子化学转化过程中。钌(II)卟啉以水作为电子和氧原子供体而敏化的烯烃已被发现,Ru卟啉可诱导水的高效两电子氧化,量子产率为60%,可从高浓度的烷基形成环氧化物水分子在反应中既是有效的电子原子又是氧原子的供体,其中水的氧原子被掺入有用的产物,即环氧化物中。

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