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Reaction scope and mechanistic insights of nickel-catalyzed migratory Suzuki–Miyaura cross-coupling

机译:镍催化的迁徙铃木宫交叉耦合的反应范围与机械洞察

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Cross-coupling reactions have developed into powerful approaches for carbon–carbon bond formation. In this work, a Ni-catalyzed migratory Suzuki–Miyaura cross-coupling featuring high benzylic or allylic selectivity has been developed. With this method, unactivated alkyl electrophiles and aryl or vinyl boronic acids can be efficiently transferred to diarylalkane or allylbenzene derivatives under mild conditions. Importantly, unactivated alkyl chlorides can also be successfully used as the coupling partners. To demonstrate the applicability of this method, we showcase that this strategy can serve as a platform for the synthesis of terminal, partially deuterium-labeled molecules from readily accessible starting materials. Experimental studies suggest that migratory cross-coupling products are generated from Ni(0/II) catalytic cycle. Theoretical calculations indicate that the chain-walking occurs at a neutral nickel complex rather than a cationic one. In addition, the original-site cross-coupling products can be obtained by alternating the ligand, wherein the formation of the products has been rationalized by a radical chain process.
机译:交叉偶联反应已经发展为碳 - 碳键形成的强大方法。在这项工作中,已经开发出具有高苄基或烯丙基选择性的Ni催化的迁移铃木瘤交叉偶联。通过该方法,可以在温和条件下有效地将不活化的烷基电子手和芳基或芳基或乙烯基硼酸有效地转移到二芳基烷烃或烯丙基苯衍生物。重要的是,不渴望的烷基氯也可以成功地用作偶联伴侣。为了证明这种方法的适用性,我们展示了该策略可以作为合成末端的平台,部分氘标记的分子来自易于可接近的原料。实验研究表明,迁移跨偶联产物由Ni(0 / II)催化循环产生。理论计算表明,链条行走在中性镍复合物中而不是阳离子。另外,原始部位交叉偶联产品可以通过交替配体获得,其中产品的形成已通过自由基链过程合理化。

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