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首页> 外文期刊>Advanced synthesis & catalysis >Mechanochemical Asymmetric Cross-Dehydrogenative Coupling Reaction: Liquid-Assisted Grinding Enables Reaction Acceleration and Enantioselectivity Control
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Mechanochemical Asymmetric Cross-Dehydrogenative Coupling Reaction: Liquid-Assisted Grinding Enables Reaction Acceleration and Enantioselectivity Control

机译:机械化学非对称交叉脱氢偶联反应:液体辅助研磨能够反应加速和对映选择性控制

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摘要

We report here a mechanochemical protocol for asymmetric cross-dehydrogenative coupling (CDC) reaction of unreactive 3-arylmethyl indoles with 1,3-dicarbonyl by liquid-assisted grinding. Small drops of liquid additive n-butyl acetate (n-BuOAc) are key to achieve high yield and enantioselectivity in this transformation. The catalyst can be lowered to 5 mol% and reused for three times. Pharmaceutical useful chiral dihydrocoumarins are further achieved through one-pot tandem asymmetric CDC and cyclization with excellent enantioselectivities. Experimental and computational studies on the reaction mechanism suggest that n-BuOAc is participated to the catalytic cycle, forming a chiral metal species during the reaction process and thereby revealed the origin of stereoselectivity.
机译:我们在此报告一种用于通过液体辅助研磨用1,3-二羰基的不反应性3-芳基甲基吲哚的不对称交式脱氢偶联(CDC)反应的机械化学协议。 乙酸二丁酯(N-Buoac)的小液体添加剂正丁酸正丁酯是在该转化中获得高产和对映选择性的关键。 催化剂可以降至5mol%并重复使用三次。 通过单罐串联不对称CDC和具有优异对映射性的环化进一步实现了药物有用的手性双水脲。 对反应机制的实验和计算研究表明,N-BuoAc参与催化循环,在反应过程中形成手性金属物质,从而揭示了立体选择性的起源。

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