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首页> 外文期刊>Journal of the American Chemical Society >Diastereo- and Enantioselective Ruthenium-Catalyzed C-C Coupling of 1-Arylpropynes and Alcohols: Alkynes as Chiral Allylmetal Precursors in Carbonyl anti-(α-Aryl)allylation
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Diastereo- and Enantioselective Ruthenium-Catalyzed C-C Coupling of 1-Arylpropynes and Alcohols: Alkynes as Chiral Allylmetal Precursors in Carbonyl anti-(α-Aryl)allylation

机译:1-芳基丙酸和醇的非对映异构和对映选择性的钌催化的C-C偶联:炔烃作为羰基抗(α-芳基)烯丙基的手性烯丙基前体

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摘要

Highly tractable 1-aryl-l-propynes, which are readily accessible via Sonogashira coupling, serve as chiral allylmetal pronucleophiles in ruthenium-JOSIPHOS-catalyzed anti-diastereo-and enantioselective aldehyde (α-aryl)allylations with primary aliphatic or benzylic alcohol proelectrophiles. This method enables convergent construction of homoallylic sec-phenethyl alcohols bearing tertiary benzylic stereocenters. Both steric and electronic features of aryl sulfonic acid additives were shown to contribute to the efficiency with which a more selective and productive iodide-bound ruthenium catalyst is formed. As corroborated by isotopic labeling studies, a dual catalytic process is operative in which alkyne-to-allene isomerization is followed by allene-carbonyl reductive coupling via hydrogen auto-transfer. Crossover of ruthenium hydrides emanating from these two discrete catalytic events is observed. The utility of this method is illustrated by conversion of selected reaction products to the corresponding phenethylamines and the first total syntheses of the neolignan natural products (-)-crataegusanoids A-D.
机译:高度易处理的1-芳基-1- propynes,其是经由Sonogashira偶联容易接近,作为手性allylmetal pronucleophiles在钌JOSIPHOS催化反非对映和对映选择性醛(α-芳基)与伯脂族或苄醇proelectrophiles烯丙基化。这种方法能够高烯丙基仲醇苯乙带有叔胺苄立构的收敛构造。芳基磺酸的添加剂的两个空间和电子特征被证明有助于与形成有更多的选择性和生产碘化结合的钌催化剂的效率。作为证实通过同位素标记的研究中,一种双催化方法是可操作的,其中炔到丙二烯异构化是通过氢自动转移,随后丙二烯羰基还原偶合。从这些两个离散催化事件发出钌氢化物的交叉是观察。 ( - ) - crataegusanoids A-d这种方法的实用性是由选择的反应产物转化为相应的苯乙胺和新木脂素的天然产物的第一全合成示出。

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  • 来源
    《Journal of the American Chemical Society》 |2021年第7期|2838-2845|共8页
  • 作者单位

    University of Texas at Austin Department of Chemistry Austin Texas 78712 United States;

    University of Texas at Austin Department of Chemistry Austin Texas 78712 United States;

    University of Texas at Austin Department of Chemistry Austin Texas 78712 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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