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首页> 外文期刊>Journal of the American Chemical Society >α- and β-Functionalized Ketones from 1,3-Dienes and Aldehydes: Control of Regio- and Enantioselectivity in Hydroacylation of 1,3-Dienes
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α- and β-Functionalized Ketones from 1,3-Dienes and Aldehydes: Control of Regio- and Enantioselectivity in Hydroacylation of 1,3-Dienes

机译:来自1,3-二烯和醛的α-和β-官能化酮:控制1,3-二烯的氢化氢化合物和对致映选择性的控制

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摘要

Ketones are among the most widely used intermediates in organic synthesis, and their synthesis from inexpensive feedstocks could be quite impactful. Regio- and enantioselective hydroacylation reactions of dienes provide facile entry into useful ketone-bearing chiral motifs with an additional latent functionality (alkene) suitable for further elaboration. Three classes of dienes, 2- or 4-monosubstituted and 2,4-disubstituted 1,3-dienes, undergo cobalt(Ⅰ)-catalyzed regio- and enantioselective hydroacylation, giving products with high enantiomeric ratios (er). These reactions are highly dependent on the ligands, and we have identified the most useful ligands and reaction conditions for each class of dienes. 2-Substituted and 2,4-disubstituted dienes predominantly undergo 1,2-addition, whereas 4-substituted terminal dienes give highly enantioselective 4,1- or 4,3-hydroacylation depending on the aldehyde, aliphatic aldehydes giving 4,1-addition and aromatic aldehydes giving 4,3-addition. Included among the substrates are feedstock dienes, isoprene (US$1.4/kg) and myrcene (US$129/kg), and several common aldehydes. We propose an oxidative dimerization mechanism that involves a Co(Ⅰ)/Co(Ⅲ) redox cycle that appears to be initiated by a cationic Co(Ⅰ) intermediate. Studies of reactions using isolated neutral and cationic Co(Ⅰ) complexes confirm the critical role of the cationic intermediates in these reactions. Enantioselective 1,2-hydroacylation of 2-trimethylsiloxy-l,3-diene reveals a hitherto undisclosed route to chiral siloxy-protected aldols. Finally, facile syntheses of the anti-inflammatory drug (S)-Flobufen (2 steps, 92% yield, >99:1 er) and the food additive (S)-Dihydrotagetone (l step, 83% yield; 96:4 er) from isoprene illustrate the power of this method for the preparation of commercially relevant compounds.
机译:酮是有机合成中最广泛使用的中间体中,它们从廉价原料中的合成可能相当有影响。二烯的测度和对映选择性的氢化反应提供了具有适用于进一步阐述的额外潜在官能(烯烃)的有用酮的手性基序的容纳进入。三类二烯,2-或4-单溶质和2,4-二磺酸盐的1,3-二烯,经历钴(Ⅰ) - 催化的催化和对映选择性的氢化氢化合物,具有高对映体比率(ER)的产品。这些反应高度依赖于配体,并且我们已经确定了每种二烯的最有用的配体和反应条件。 2-取代的和2,4-二取代的二烯,优势为1,2-加入,而4取代的末端二烯,取决于醛,脂肪醛脂肪醛给予高映射4,1-或4,3-氢化剂,得到4,1-1和芳香醛给予4,3-1。在基材中包括原料二烯,异戊二烯(1.4 / kg)和牛核(129美元/千克)和几种常见醛。我们提出了一种氧化二聚化机制,涉及CO(Ⅰ)/ CO(Ⅲ)氧化还原循环,其似乎由阳离子CO(Ⅰ)中间体引发。使用分离中性和阳离子CO(Ⅰ)复合物的反应研究证实了阳离子中间体在这些反应中的关键作用。 2-三甲基硅氧烷-1,3-二烯的对映选择性1,2-氢化氢化,揭示了迄今为止未披露的途径以手性硅氧基保护的醛醇。最后,容易合成的抗炎药(S)-Flobufen(2步,92%收率,> 99:1ER)和食​​品添加剂(S)-DiHyDrotagetone(L步骤,83%收率; 96:4呃来自异戊二烯的说明了该方法的制备商业上相关化合物的功率。

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  • 来源
    《Journal of the American Chemical Society》 |2021年第32期|12825-12835|共11页
  • 作者单位

    Department of Chemistry and Biochemistry The Ohio State University Columbus Ohio 43210 United States;

    Department of Chemistry and Biochemistry The Ohio State University Columbus Ohio 43210 United States;

  • 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);
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  • 正文语种 eng
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