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Direct dehydrogenative alkyl Heck-couplings of vinylarenes with umpolung aldehydes catalyzed by nickel

机译:镍催化的乙烯基芳烃与环戊醛的直接脱氢烷基赫克偶联

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摘要

Alkenes are fundamental functionalities in nature and highly useful intermediates in organic synthesis, medicinal chemistry and material sciences. Transition-metal-catalyzed Heck couplings with organic halides as electrophiles have been established as a powerful protocol for the synthesis of this valuable building block. However, the requirement of organic halides and the generation of stoichiometric hazardous halide wastes may cause significant sustainable concerns. The halide-free oxidative Heck alkenylations involving organometallics or arenes as the coupling partners provide a facile and alternative pathway. Nonetheless, stoichiometric amounts of extra oxidant are essential in most cases. Herein, we present a direct dehydrogenative alkyl Heck-coupling reaction under oxidant-free conditions, liberating hydrogen, nitrogen and water as the side products. Excellent regioselectivity is achieved via neighboring oxygen atom coordination. Broad substrate scope, great functional group (ketone, ester, phenol, free amine, amide etc) tolerance and modification of pharmaceutical candidates and biological molecules exemplified its generality and practicability.
机译:烯烃是自然界中的基本功能,是有机合成,药物化学和材料科学中非常有用的中间体。过渡金属催化的Heck与有机卤化物作为亲电子试剂的偶联已建立为合成这种有价值的构件的有力方法。但是,对有机卤化物的需求和化学计量的危险卤化物废物的产生可能引起重大的可持续性问题。涉及有机金属或芳烃作为偶联配偶体的无卤化物的氧化型Heck烯基化提供了一种便捷的途径。但是,在大多数情况下,化学计量的额外氧化剂是必不可少的。在本文中,我们提出了在无氧化剂条件下的直接脱氢烷基Heck偶联反应,释放出氢,氮和水作为副产物。通过邻近的氧原子配位获得优异的区域选择性。广泛的底物范围,强大的官能团(酮,酯,酚,游离胺,酰胺等)耐受性以及候选药物和生物分子的修饰证明了其通用性和实用性。

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