氧化加成
芳基
电泳剂
卤化物
催化作用
化学
催化循环
还原消去
配体(生物化学)
组合化学
氧化磷酸化
卤代芳基
甲烷氧化偶联
齿合度
有机化学
金属
烷基
生物化学
受体
作者
Abdallah Zeineddine,Laura Estévez,Sonia Mallet‐Ladeira,Karinne Miqueu,Abderrahmane Amgoune,Didier Bourissou
标识
DOI:10.1038/s41467-017-00672-8
摘要
The reluctance of gold to achieve oxidative addition reaction is considered as an intrinsic limitation for the development of gold-catalyzed cross-coupling reactions with simple and ubiquitous aryl halide electrophiles. Here, we report the rational construction of a Au(I)/Au(III) catalytic cycle involving a sequence of Csp2-X oxidative addition, Csp2-H auration and reductive elimination, allowing a gold-catalyzed direct arylation of arenes with aryl halides. Key to this discovery is the use of Me-Dalphos, a simple ancillary (P,N) ligand, that allows the bottleneck oxidative addition of aryl iodides and bromides to readily proceed under mild conditions. The hemilabile character of the amino group plays a crucial role in this transformation, as substantiated by density functional theory calculations.Catalysis involving Au(I)/Au(III) cycles are notoriously hampered by the reluctance of Au(I) towards oxidative addition. Here, the authors show that an hemilabile bidentate ligand promotes oxidative addition of aryl halides to Au(I) and the catalytic formation of biaryl coupling products.
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