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首页> 外文期刊>Organic & biomolecular chemistry >Enantioselective N-heterocyclic carbene-catalysed intermolecular crossed benzoin condensations: improved catalyst design and the role of in situ racemisation
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Enantioselective N-heterocyclic carbene-catalysed intermolecular crossed benzoin condensations: improved catalyst design and the role of in situ racemisation

机译:对映选择性的N-杂环卡蛋白催化的分子分子交叉苯并凝胶缩合:改进的催化剂设计和原位出色的作用

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摘要

The enantioselective intermolecular crossed-benzoin condensation mediated by novel chiral N-heterocyclic carbenes derived from pyroglutamic acid has been investigated. A small library of chiral triazolium ions were synthesised. Each possessed a tertiary alcohol H-bond donor and a variable N-aryl substituent. It was found that increasing both the steric requirement and the electron-withdrawing characteristics of the N-aryl ring led to more chemoselective, efficient and enantioselective chemistry, however both quenching the reaction at different times and deuterium incorporation experiments involving the product revealed that this is complicated by product racemisation in situ (except in the case of benzoin itself), which explains the dependence of enantioselectivity on the electrophilicity of the reacting aldehydes common in the literature. Subsequent protocol optimisation, where one reacting partner was an o-substituted benzaldehyde, allowed a range of crossed-benzoins to be synthesised in moderate-good yields with moderate to excellent enantioselectivity.
机译:研究了由衍生自焦化酸的新型手性正杂环碳酸介导的映选择性分子分子交叉苯并凝聚凝聚。合成了一小部分手性三唑离子。每个都具有叔醇H键供体和可变的N-芳基取代基。发现,越来越多的内芳基环的电子提取特性导致更多化学选择性,有效和对致密的化学性化学,然而涉及该产品的不同时间和氘掺入实验的反应揭示了这一点通过原位的产物灭绝(在苯并素本身除外)并发作用,这解释了对映射性对文献中常见的反应醛的亲电性的依赖性。随后的方案优化,其中一个反应合作伙伴是O-取代的苯甲醛,允许一系列交叉的苯并,以中等良好的产率合成,中等至优异的对映选择性。

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  • 来源
    《Organic & biomolecular chemistry》 |2021年第1期|248-258|共11页
  • 作者单位

    Centre for Synthesis and Chemical Biology Trinity Biomedical Sciences Institute School of Chemistry The University of Dublin Trinity College Dublin 2 Ireland;

    Centre for Synthesis and Chemical Biology Trinity Biomedical Sciences Institute School of Chemistry The University of Dublin Trinity College Dublin 2 Ireland;

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