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首页> 外文期刊>Chemistry: A European journal >Desymmetrisation of a centrosymmetric molecule by carbon-carbon bond formation: Asymmetric aldol reactions of a centrosymmetric dialdehyde
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Desymmetrisation of a centrosymmetric molecule by carbon-carbon bond formation: Asymmetric aldol reactions of a centrosymmetric dialdehyde

机译:碳-碳键形成引起的中心对称分子的不对称:中心对称二醛的不对称醛醇缩合反应

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摘要

The desymmetrisation of centrosymmetric molecules by enantio-selective carbon-carbon bond formation has been reported for the first time. A bimetallic zinc catalyst developed by Trost was exploited in the desymmetrisation of a centrosymmetric dialdehyde. The approach was successful with a range of ketone nucleophiles and was uniformly highly diastereose-lective (> 98: < 2). The yield and the enantioselectivity of the reaction varied as a function of the ketone used, and the desymmetrised products were obtained in up to 74 % yield and 97% ee (ee=enantiomeric excess). The desymmetrisation of centrosymmetric molecules by enantioselective carbon-carbon bond formation is an efficient and convergent synthetic approach which is likely to find wide application in synthesis, particularly in the total synthesis of natural products with embedded centrosymmetric fragments.
机译:首次报道了通过对映选择性碳-碳键的形成来消除中心对称分子的对称性。 Trost开发的双金属锌催化剂被用于对中心对称二醛的脱对称。该方法对于一系列酮亲核试剂是成功的,并且均一性地高度非对映体选择性(> 98:<2)。反应的产率和对映选择性随所使用的酮而变化,并且获得不对称的产物,产率高达74%,ee高达97%(ee =对映异构体过量)。通过对映选择性碳-碳键的形成来消除中心对称分子的不对称性是一种有效且收敛的合成方法,可能在合成中,尤其是在具有嵌入的中心对称片段的天然产物的全合成中广泛应用。

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