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Understanding the mechanism of the chiral phosphoric acid-catalyzed aza-Cope rearrangement

机译:了解手性磷酸催化的AZA-COPE重排的机制

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摘要

The first catalytic enantioselective aza-Cope rearrangement was reported in 2008 by Rueping et al. The reaction is catalyzed by a 1,1'-bi-2-naphthol-derived (BINOL-derived) phosphoric acid and achieved high yields and enantioselectivities (up to 97 : 3 er with 75% yield). This work utilizes Density Functional Theory to understand the mechanism of the reaction and explain the origins of the enantioselectivity. An extensive conformational search was carried out to explore the different activation modes by the catalyst and, the Transition State (TS) leading to the major product was found to be 1.3 kcal mol~(-1) lower in energy than the TS leading to the minor product. The origin of this stabilization was rationalized with NBO and NCl analysis: it was found that the major TS has a greater number of non-bonding interactions between the substrate and the catalyst, and shows stronger H-bond interactions between H atoms in the substrate and the O atoms in the phosphate group of the catalyst.
机译:通过Rueping等人在2008年报道了第一种催化对映选择性Aza-Cope重排。 反应由1,1'-Bi-2-萘酚衍生的(甲醇衍生的)磷酸催化,并达到高产率和对映射性(高达97:3 ER,产率为75%)。 这项工作利用密度函数理论来了解反应的机制,并解释对映选择性的起源。 进行了广泛的构象搜索以探索催化剂的不同激活模式,并发现导致主要产品的过渡状态(TS)为1.3千卡Mol〜(-1)能量,而不是导致Ts 小产品。 这种稳定化的起源与NbO和NCL分析合理化:发现主TS在基材和催化剂之间具有更多数量的非键合相互作用,并且在基材中H原子之间的H键相互作用较强的H键相互作用。 催化剂的磷酸盐基团的O原子。

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  • 来源
    《Organic & biomolecular chemistry》 |2021年第16期|3656-3664|共9页
  • 作者单位

    SSPC the SFI Research Centre for Pharmaceuticals School of Chemistry University College Cork Cork T12 K8AF Ireland;

    Department of Chemistry University of Bath Claverton Down Bath BA2 7AY UK;

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