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Dinuclear zinc complex catalyzed asymmetric methylation and alkynylation of aromatic aldehydes

机译:双核锌配合物催化芳香醛的不对称甲基化和炔基化

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摘要

A general AzePhenol dinuclear zinc catalytic system has been successfully developed and introduced into the asymmetric addition of dimethylzinc and alkynylzinc to aromatic aldehydes. In this system, an azetidine derived chiral ligand has proven to be an effective enantioselective promoter. Under the optimal reaction conditions, a series of chiral 1-hydroxyethyl (up to 99% ee) and secondary propargylic alcohols (up to 96% ee) were generated with good yields and enantioselectivities. Additionally, this novel catalytic system showed good functional group compatibility. Remarkably, the substituent's electronic nature alone is not sufficient to allow for exclusive enantioselectivity, an additional substituent's location also had an effect. We proposed that the formation of a stable and structural rigid transition state by the chelation of ortho substituted benzaldehydes to the zinc atom was responsible for the observed higher enantioselectivity. The possible catalytic cycles of both transformations accounting for the stereoselectivity were described accordingly.
机译:已成功开发了通用的AzePhenol双核锌催化体系,并将其引入到芳族醛中的二甲基锌和炔基锌的不对称加成中。在该系统中,已证明氮杂环丁烷衍生的手性配体是有效的对映选择性启动子。在最佳反应条件下,生成了一系列具有良好收率和对映选择性的手性1-羟乙基(至多99%ee)和仲炔丙醇(至多96%ee)。另外,这种新颖的催化体系显示出良好的官能团相容性。显着地,仅取代基的电子性质不足以允许排他的对映选择性,另外的取代基的位置也起作用。我们提出通过邻位取代的苯甲醛与锌原子的螯合形成稳定的结构刚性过渡态是观察到的较高对映选择性的原因。相应地描述了考虑到立体选择性的两个转化的可能的催化循环。

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  • 来源
    《Organic & biomolecular chemistry》 |2017年第34期|7147-7156|共10页
  • 作者单位

    College of Chemistry and Chemical Engineering, Shaanxi University of Science and Technology, 6 Xuefu Road, Weiyang District, Xi'an Shaanxi, China;

    College of Chemistry and Molecular Engineering, Zhengzhou University, No. 75 Daxue Road, Zhengzhou Henan, China;

    College of Chemistry and Molecular Engineering, Zhengzhou University, No. 75 Daxue Road, Zhengzhou Henan, China;

    College of Chemistry and Molecular Engineering, Zhengzhou University, No. 75 Daxue Road, Zhengzhou Henan, China;

    College of Chemistry and Molecular Engineering, Zhengzhou University, No. 75 Daxue Road, Zhengzhou Henan, China;

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