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首页> 外文期刊>ACS catalysis >Visible Light Catalysis Assisted Site-Specific Functionalization of Amino Acid Derivatives by C-H Bond Activation without Oxidant: Cross-Coupling Hydrogen Evolution Reaction
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Visible Light Catalysis Assisted Site-Specific Functionalization of Amino Acid Derivatives by C-H Bond Activation without Oxidant: Cross-Coupling Hydrogen Evolution Reaction

机译:可见光催化通过不带氧化剂的C-H键活化来辅助氨基酸衍生物的特定位官能化:交叉耦合氢释放反应

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Visible light catalysis assisted site-specific modification of alpha-amino acids by C-H bond functionalization without the use of any oxidant or base is described. Using Ru(bpy)(3)(PF6)(2) and Co(dmgH)(2)pyCl as a photosensitizer and a catalyst, respectively, a variety of glycine esters with beta-keto esters or indole derivatives can be quantitatively converted into the desired cross-coupling products and hydrogen (H-2) in good to excellent yields under visible light irradiation. A mechanistic study reveals that the cascade electron transfer processes from glycine ester to the photoexcited Ru(bpy)(3)(PF6)(2) and then to Co(dmgH)(2)pyCl catalyst, together with the capture of protons delivered by substrates, are crucial for the cross-coupling hydrogen evolution reaction of secondary amines in organic solvents.
机译:描述了在不使用任何氧化剂或碱的情况下通过C-H键官能化的可见光催化辅助的α-氨基酸的位点特异性修饰。分别使用Ru(bpy)(3)(PF6)(2)和Co(dmgH)(2)pyCl作为光敏剂和催化剂,可以将各种甘氨酸酯与β-酮酯或吲哚衍生物定量地转化为在可见光照射下,所需的交叉偶联产物和氢(H-2)的收率好至极好。机理研究表明,从甘氨酸酯到光激发的Ru(bpy)(3)(PF6)(2)然后再到Co(dmgH)(2)pyCl催化剂的级联电子转移过程,以及由底物对于仲胺在有机溶剂中的交叉偶联氢生成反应至关重要。

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