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首页> 外文期刊>Chemistry: A European journal >Mechanistic Insights into Rhenium-Catalyzed Regioselective C-Alkenylation of Phenols with Internal Alkynes
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Mechanistic Insights into Rhenium-Catalyzed Regioselective C-Alkenylation of Phenols with Internal Alkynes

机译:机械洞察铼催化的苯酚含有内部炔烃的C-链烯化酶

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摘要

A (m-aryloxo)rhenium complex was isolated and confirmed as a key precatalyst for rhenium-catalyzed orthoalkenylation (C-alkenylation) of unprotected phenols with alkynes. The reaction exclusively provided ortho-alkenylphenols; the formation of para or multiply alkenylated phenols and hydrophenoxylation (O-alkenylation) products was not observed. Several mechanistic experiments excluded a classical Friedel-Crafts-type mechanism, leading to the proposed phenolic hydroxyl group assisted electrophilic alkenylation as the most plausible reaction mechanism. For this purpose, the use of rhenium, a metal between the early and late transition metals in the periodic table, was key for the activation of both the soft carbon-carbon triple bond of the alkyne and the hard oxygen atom of the phenol, at the same time. ortho-Selective alkenylation with allenes also provided the corresponding adducts with a substitution pattern different from that obtained by the addition reaction with alkynes.
机译:分离出(M-芳氧解)铼络合物,并确认为具有炔烃的未受保护的酚的铼催化的正烷基化(C-链烯化)的关键预催化剂。 该反应专门提供邻烯基苯酚; 未观察到对或乘法烯化酚和疏水氧基化(O-链烯化)产物的形成。 几项机械实验排除了经典的Friedel-Craffics型机构,导致所提出的酚醛羟基辅助亲电链烯化作为最合理的反应机制。 为此目的,使用铼,早期过渡金属在周期表中使用的金属是激活炔烃和苯酚的硬氧原子的软碳 - 碳三键的关键 同时。 与烯烯酯的邻邻选择性链烯化也提供了相应的加合物,其具有与通过与炔烃的加成反应得到的替代品不同的加合物。

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