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Primary Alcohols from Terminal Olefins: Formal Anti-Markovnikov Hydration via Triple Relay Catalysis

机译:来自末端烯烃的主要醇类:通过三重中继催化的形式化反马尔科夫尼科夫水化反应

摘要

Alcohol synthesis is critical to the chemical and pharmaceutical industries. The addition of water across olefins to form primary alcohols (anti-Markovnikov olefin hydration) would be a broadly useful reaction but has largely proven elusive; an indirect hydroboration/oxidation sequence requiring stoichiometric borane and oxidant is currently the most practical methodology. Here, we report a more direct approach with the use of a triple relay catalysis system that couples palladium-catalyzed oxidation, acid-catalyzed hydrolysis, and ruthenium-catalyzed reduction cycles. Aryl-substituted terminal olefins are converted to primary alcohols by net reaction with water in good yield and excellent regioselectivity.
机译:酒精合成对化学和制药行业至关重要。在烯烃上加水形成伯醇(反马氏水合烯烃水合反应)将是一种广泛有用的反应,但已被证明是难以捉摸的。目前最实用的方法是需要化学计量的硼烷和氧化剂的间接硼氢化/氧化顺序。在这里,我们报告了一种更直接的方法,即使用三重中继催化系统,该系统将钯催化的氧化,酸催化的水解和钌催化的还原循环耦合在一起。芳基取代的末端烯烃通过与水的净反应以良好的产率和优异的区域选择性转化为伯醇。

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