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首页> 外文期刊>Journal of the American Chemical Society >Hypervalent λ~3-Bromane Strategy for Baeyer-Villiger Oxidation: Selective Transformation of Primary Aliphatic and Aromatic Aldehydes to Formates, Which is Missing in the Classical Baeyer-Villiger Oxidation
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Hypervalent λ~3-Bromane Strategy for Baeyer-Villiger Oxidation: Selective Transformation of Primary Aliphatic and Aromatic Aldehydes to Formates, Which is Missing in the Classical Baeyer-Villiger Oxidation

机译:Baeyer-Villiger氧化的超高价λ〜3-芳烃策略:经典的Bayerer-Villiger氧化中缺少的主要脂肪族和芳香族醛选择性转化成各种形式的形式

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摘要

Aconceptually distinct, modern strategy for Baeyer-Villiger oxidation (BVO) was developed. Our novel method involves initial hydration of water to carbonyl compounds, followed by ligand exchange of hypervalent aryl-λ~3-bromane on bromane(lll) with the resulting hydrate, yielding a new type of activated Criegee intermediate. The intermediate undergoes BV rearrangement and produces an ester via facile reductive elimination of an aryl-λ~3-bromanyl group, because of the hypernucleofugality. The novel strategy makes it possible to induce selectively the BV rearrangement of straight chain primary aliphatic as well as aromatic aldehydes, which is missing in the classical BVO: for instance, octanal and benzaldehyde afforded rearranged formate esters with high selectivity (>95%) under our conditions, while the attempted classical BVO produced only carboxylic acids. This firmly establishes the powerful nature of new methodology for BVO.
机译:提出了概念上截然不同的现代拜耳-维利格氧化(BVO)策略。我们的新方法涉及将水最初水合为羰基化合物,然后将溴化物(III)上的高价芳基-λ〜3-溴烯与产生的水合物进行配体交换,从而产生一种新型的活化Criegee中间体。由于超核官能度,该中间体经历BV重排并通过容易地还原性消除芳基-λ〜3-溴基而产生酯。这种新颖的策略使选择性诱导直链伯脂肪族和芳香族醛的BV重排成为可能,而经典BVO中缺少这种重排:例如,辛酸和苯甲醛在90°C下可提供高选择性(> 95%)的重排甲酸酯。我们的条件,而尝试的经典BVO只产生羧酸。这牢固地确立了BVO新方法的强大本质。

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  • 来源
    《Journal of the American Chemical Society》 |2010年第27期|P.9236-9239|共4页
  • 作者单位

    Graduate School of Pharmaceutical Sciences, University of Tokushima, 1-78 Shomachi, Tokushima 770-8505, Japan;

    Graduate School of Pharmaceutical Sciences, University of Tokushima, 1-78 Shomachi, Tokushima 770-8505, Japan;

    Graduate School of Pharmaceutical Sciences, University of Tokushima, 1-78 Shomachi, Tokushima 770-8505, Japan;

    Department of Material Science and Chemistry, Faculty of Systems Engineering, Wakayama University, 930 Sakaedani, Wakayama 640-8510, Japan;

    Department of Material Science and Chemistry, Faculty of Systems Engineering, Wakayama University, 930 Sakaedani, Wakayama 640-8510, Japan;

  • 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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