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Decarbonylative organoboron cross-coupling of esters by nickel catalysis

机译:镍催化酯的脱羰基有机硼交联

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摘要

The Suzuki-Miyaura cross-coupling is a metal-catalysed reaction in which boron-based nucleophiles and halide-based electrophiles are reacted to form a single molecule. This is one of the most reliable tools in synthetic chemistry, and is extensively used in the synthesis of pharmaceuticals, agrochemicals and organic materials. Herein, we report a significant advance in the choice of electrophilic coupling partner in this reaction. With a user-friendly and inexpensive nickel catalyst, a range of phenyl esters of aromatic, heteroaromatic and aliphatic carboxylic acids react with boronic acids in a decarbonylative manner. Overall, phenyl ester moieties function as leaving groups. Theoretical calculations uncovered key mechanistic features of this unusual decarbonylative coupling. Since extraordinary numbers of ester-containing molecules are available both commercially and synthetically, this new 'ester' cross-coupling should find significant use in synthetic chemistry as an alternative to the standard halide-based Suzuki-Miyaura coupling.
机译:Suzuki-Miyaura交叉偶联是一种金属催化的反应,其中基于硼的亲核试剂和基于卤化物的亲电试剂反应形成单个分子。这是合成化学中最可靠的工具之一,已广泛用于合成药物,农用化学品和有机材料。在本文中,我们报道了在该反应中亲电偶联伴侣的选择方面的重大进展。使用用户友好且便宜的镍催化剂,芳族,杂芳族和脂族羧酸的一系列苯基酯会以脱羰基方式与硼酸反应。总体而言,苯基酯部分起离去基团的作用。理论计算揭示了这种异常的脱羰基偶联的关键机理。由于大量的含酯分子都可以通过商业途径获得,也可以通过合成途径获得,因此这种新的“酯”交叉偶联应在合成化学中得到重要应用,以取代基于卤化物的标准Suzuki-Miyaura偶联。

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