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Redox Mediators in Visible Light Photocatalysis: Photocatalytic Radical Thiol-Ene Additions

机译:可见光光催化中的氧化还原介体:光催化自由基硫醇-烯加成反应

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Synthetically useful radical thiol-ene reactions can be initiated by visible light irradiation in the presence of transition metal polypyridyl photocatalysts. The success of this method relies upon the use of p-toluidine as an essential additive. Using these conditions, high-yielding thiol-ene reactions of cysteine-containing biomolecules can be accomplished using biocompatibile wavelengths of visible light, under aqueous conditions, and with the thiol component as the limiting reagent. We present evidence that p-toluidine serves as a redox mediator that is capable of catalyzing the otherwise inefficient photooxidation of thiols to the key thiyl radical intermediate. Thus, we show that co-catalytic oxidants can be important in the design of synthetic reactions involving visible light photoredox catalysis.
机译:合成有用的自由基硫醇-烯反应可以在过渡金属多吡啶基光催化剂存在下通过可见光照射引发。该方法的成功取决于使用对甲苯胺作为基本添加剂。使用这些条件,可以在水性条件下,使用可见光的生物相容性波长,并且以硫醇成分作为限制试剂,来完成含半胱氨酸的生物分子的高产率硫醇-烯反应。我们目前的证据表明,对甲苯胺可作为氧化还原介体,能够催化否则低效的巯基光氧化为关键的噻吩基中间体。因此,我们表明助催化氧化剂在涉及可见光光氧化还原催化的合成反应的设计中可能很重要。

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