化学
胺化
钯
卤化物
芳基
催化作用
氨
配体(生物化学)
基础(拓扑)
氢氧化物
水溶液
有机化学
组合化学
生物化学
数学分析
烷基
受体
数学
作者
Kyoungmin Choi,John N. Brunn,Kailaskumar Borate,Rahul Kaduskar,Carlos Lizandara‐Pueyo,Harish M. Shinde,Roland Goetz,John F. Hartwig
摘要
The conversion of aryl halides to primary arylamines with a convenient and inexpensive source of ammonia has been a long-standing synthetic challenge. Aqueous ammonia would be the most convenient and least expensive form of ammonia, but such a palladium-catalyzed amination reaction with a high concentration of water faces challenges concerning catalyst stability and competing hydroxylation, and palladium-catalyzed reactions with this practical reagent are rare. Further, most reactions with ammonia to form primary amines are conducted with
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