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Chemoselective Union of Olefins, Organohalides, and Redox-Active Esters Enables Regioselective Alkene Dialkylation

机译:烯烃,有机卤化物和氧化还原活性酯的化学选择性联合能够实现区域​​选择性烯烃脱烷基化

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摘要

Multicomponent catalytic processes that can generate multiple C(sp~3)-C(sp~3) bonds in a single step under mild conditions, particularly those that employ inexpensive catalysts and substrates, are highly sought-after in chemistry research for complex molecule synthesis. Here, we disclose an efficient Ni-catalyzed reductive protocol that chemoselectively merges alkenyl amides with two different aliphatic electrophiles. Starting materials are readily accessible from stable and abundant feedstock, and products are furnished in up to >98:2 regioisomeric ratios. The present strategy eliminates the use of sensitive organometallic reagents, tolerates a wide array of complex functionalities, and enables regiodivergent addition of two primary alkyl groups bearing similar electronic and steric attributes across aliphatic C=C bonds with exquisite control of site selectivity. Utility is underscored by the concise synthesis of bioactive compounds and postreaction functionalizations leading to structurally diverse scaffolds. DFT studies revealed that the regiochemical outcome originates from the orthogonal reactivity and chemoselectivity profiles of in situ generated organonickel species.
机译:多组分催化方法,其在温和条件下的单一步骤中可以在单一步骤中产生多个C(SP〜3)-C(SP〜3)键,特别是那些在复合分子合成的化学研究中高度寻求高度寻求的化学研究。 。在此,我们公开了一种高效的Ni催化还原方案,其用两种不同的脂族电子药物化学胶合物合并链烯基酰胺。从稳定和丰富的原料易于访问原料,产品均为高达> 98:2的测定值。本策略消除了敏感有机金属试剂的使用,可容忍各种复杂官能团,并且能够在脂肪族C = C键上具有与脂族C = C键的相似电子和空间属性的两个初级烷基的加入。通过简明合成生物活性化合物和前置官能化的效用,导致结构多样化的支架。 DFT研究表明,调节结果源自原位产生的细胞尼氏菌物种的正交反应性和化学选择性谱。

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  • 来源
    《Journal of the American Chemical Society》 |2020年第51期|21410-21419|共10页
  • 作者单位

    Department of Chemistry National University of Singapore Singapore 117549 Republic of Singapore;

    Department of Chemistry National University of Singapore Singapore 117549 Republic of Singapore;

    School of Chemistry and Chemical Engineering Chongqing Key Laboratory of Theoretical and Computational Chemistry Chongqing University Chongqing 400030 China;

    Department of Chemistry National University of Singapore Singapore 117549 Republic of Singapore;

    School of Chemistry and Chemical Engineering Chongqing Key Laboratory of Theoretical and Computational Chemistry Chongqing University Chongqing 400030 China College of Chemistry and Institute of Green Catalysis Zhengzhou University Zhengzhou Henan 450001 China;

    Department of Chemistry National University of Singapore Singapore 117549 Republic of Singapore;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 23:01:00

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