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首页> 外文期刊>Chemistry: A European journal >Thiourea-enhanced flavin photooxidation of benzyl alcohol
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Thiourea-enhanced flavin photooxidation of benzyl alcohol

机译:硫脲增强的黄素对苯甲醇的光氧化

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摘要

Upon irradiation, flavin oxidises 4-methoxybenzyl alcohol to the corresponding aldehyde using aerial 02 as the terminal oxidant. We have observed that this reaction is significantly accelerated by the presence of thiourea. A series of thiourea-functionalised flavins has been prepared from flavin isothiocyanates and their photocatalytic efficiencies have been monitored by NMR. The alcohol photooxidation proceeds rapidly and cleanly with high turnover numbers of up to 580, exceeding previously reported performances. A likely mechanistic rationale for the more than 30-fold acceleration of the photo-redox reaction by thiourea has been derived from spectroscopic, electrochemical, and kinetic studies. Thus, thiourea acts as an electron-transfer mediator for the initial photooxidation of 4-methoxybenzyl alcohol by the excited flavins. This mechanism has similarities to electron-relay mechanisms in flavoenzymes, for which cysteine sulfenic acid intermediates are proposed. The observation that thiourea mediates flavin photo-redox processes is valuable for the design of more sophisticated photocatalysts based on Nature's best redox chromophore.
机译:照射后,黄素使用航空02作为末端氧化剂将4-甲氧基苄醇氧化为相应的醛。我们已经观察到,硫脲的存在大大促进了该反应。由异硫氰酸黄素制备了一系列硫脲官能化的黄素,并通过NMR监测了它们的光催化效率。酒精的光氧化反应迅速,清洁地进行,高达580个的高周转率,超过了先前报道的性能。从光谱学,电化学和动力学研究中得出了硫脲使光-氧化还原反应加速30倍以上的可能的机械原理。因此,硫脲充当了被激发的黄素对4-甲氧基苄醇进行初始光氧化的电子转移介质。该机制与黄素酶中的电子中继机制相似,为此提出了半胱氨酸亚磺酸中间体。硫脲介导的黄素光氧化还原过程的观察对于基于自然界最佳的氧化还原发色团设计更复杂的光催化剂具有重要价值。

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