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Catalytic Nucleophilic Allylation Driven by the Water–Gas Shift Reaction

机译:催化亲核烯丙基由水 - 气体变换反应驱动

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摘要

The ruthenium-catalyzed allylation of aldehydes with allylic pro-nucleophiles has been demonstrated to be an efficient means to form carbon–carbon bonds under mild conditions. The evolution of this reaction from the initial serendipitous discovery to its general synthetic scope is detailed, highlighting the roles of water, CO, and amine in the generation of a more complete catalytic cycle. The use of unsymmetrical allylic pro-nucleophiles was shown to give preferential product formation through the modulation of reaction conditions. Both ( E )-cinnamyl acetate and vinyl oxirane were efficiently used to form the anti -branched products (up to >20:1 anti/syn ) and E -linear products (up to >20:1 E/ Z) in high selectivity with aromatic, α,β-unsaturated, and aliphatic aldehydes, respectively. Attempts to render the reaction enantioselective are highlighted and include enantioenrichment of up to 75:25 for benzaldehyde.
机译:已经证明了用烯丙基促核试剂的醛醛烯丙基烯化醛形成在温和条件下形成碳 - 碳键的有效方法。 本发明的初始偶然发现的这种反应的演变是详细的,突出了水,CO和胺在产生更完整的催化循环中的作用。 使用不对称的烯丙基亲核试剂的使用通过调节反应条件来提供优先产品。 乙酸氨基铵和乙烯基炔氨酸和乙烯基氧乙烷(乙烯基氨基乙酸乙酸乙烯酯)以高选择性高精度地用于形成抗 - 分析产物(高达> 20:1抗/同步)和E -LINEAL产品(最高> 20:1 E / Z) 分别具有芳族,α,β-不饱和和脂族醛。 试图突出显示反应对映选择性的,并包括苯甲醛的酶预9至75:25。

著录项

  • 来源
    《The Journal of Organic Chemistry》 |2018年第1期|共26页
  • 作者单位

    Roger Adams Laboratory Department of Chemistry University of Illinois Urbana Illinois 61801 United States;

    Roger Adams Laboratory Department of Chemistry University of Illinois Urbana Illinois 61801 United States;

    Roger Adams Laboratory Department of Chemistry University of Illinois Urbana Illinois 61801 United States;

    Roger Adams Laboratory Department of Chemistry University of Illinois Urbana Illinois 61801 United States;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
  • 关键词

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