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首页> 外文期刊>Angewandte Chemie >Mechanistic Insights into the Interface-Directed Transformation of Thiols into Disulfides and Molecular Hydrogen by Visible-Light Irradiation of Quantum Dots
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Mechanistic Insights into the Interface-Directed Transformation of Thiols into Disulfides and Molecular Hydrogen by Visible-Light Irradiation of Quantum Dots

机译:量子点可见光照射下硫醇向二硫化物和分子氢的界面定向转化的机理研究。

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摘要

Quantum dots (QDs) offer new and versatile ways to harvest light energy. However, there are few examples involving the utilization of QDs in organic synthesis. Visible-light irradiation of CdSe QDs was found to result in virtually quantitative coupling of a variety of thiols to give disulfides and H2 without the need for sacrificial reagents or external oxidants. The addition of small amounts of nickel(II) salts dramatically improved the efficiency and conversion through facilitating the formation of hydrogen atoms, thereby leading to faster regeneration of the ground-state QDs. Mechanistic studies reveal that the coupling reaction occurs on the QD surfaces rather than in solution and offer a blueprint for how these QDs may be used in other photocatalytic applications. Because no sacrificial agent or oxidant is necessary and the catalyst is reusable, this method may be useful for the formation of disulfide bonds in proteins as well as in other systems sensitive to the presence of oxidants.
机译:量子点(QD)提供了收集光能的新型通用方法。但是,很少有涉及在有机合成中利用量子点的例子。发现CdSe QD的可见光照射实际上导致了各种硫醇的定量偶联,从而生成了二硫化物和H2,而无需使用牺牲试剂或外部氧化剂。少量镍(II)盐的添加通过促进氢原子的形成极大地提高了效率和转化率,从而导致基态量子点的更快再生。机理研究表明,偶联反应发生在QD表面而不是溶液中,为这些QD如何用于其他光催化应用提供了蓝图。因为不需要牺牲剂或氧化剂并且催化剂是可重复使用的,所以该方法对于在蛋白质以及对氧化剂的存在敏感的其他系统中形成二硫键可能是有用的。

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