化学
芳基
亲核细胞
还原消去
烯烃
氢化物
键裂
药物化学
氧化加成
氢原子
立体化学
劈理(地质)
迁移插入
氢
催化作用
有机化学
群(周期表)
烷基
岩土工程
断裂(地质)
工程类
作者
So Won Youn,So Ra Lee,Yun Ah Kim,da Young Kang,Min Jung Jang
标识
DOI:10.1002/slct.201601382
摘要
Abstract In general, alkylpalladium intermediates containing a syn β‐hydrogen atom are expected to undergo β–hydride elimination preferentially. However, this study unveils a new mechanistic mode in a Pd(II)‐catalyzed transformation, which leads to a series of both C−N/C−C bond forming and C−C bond forming/cleavage events. It has been demonstrated that a Pd(II)‐catalyzed oxidative cyclization of stilbenes bearing a pendent nucleophile such as 2‐alkenylanilines and 2‐alkenylphenyl 1,3‐diketones operates through an uncommon Pd−C bond cleavage assisted by a neighboring aryl group and CuCl 2 –assisted transient Pd oxidation, rather than generally preferred β–hydride elimination in alkylpalladium intermediates containing a syn β‐hydrogen atom. As a result, 1,2‐aryl migration occurs to lead to the unexpected formation of a variety of 3‐substituted indoles and 4‐aryl‐1‐naphthols. In addition, selective migration of an aryl group could be achieved from β,β‐disubstituted alkene substrates through alkylpalladium intermediates deprived of syn β‐hydrogen atom.
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