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手性抗衡离子介导的轴手性酰胺的氢键驱动动态动力学拆分

Hydrogen-Bond-Enabled Dynamic Kinetic Resolution of Axially Chiral Amides Mediated by a Chiral Counterion.

作者信息

Fugard Alison J, Lahdenperä Antti S K, Tan Jaqueline S J, Mekareeya Aroonroj, Paton Robert S, Smith Martin D

机构信息

Chemistry Research Laboratory, University of Oxford, 12 Mansfield Road, Oxford, OX1 3TA, UK.

Department of Chemistry, Colorado State University, Fort Collins, CO, 80523, USA.

出版信息

Angew Chem Int Ed Engl. 2019 Feb 25;58(9):2795-2798. doi: 10.1002/anie.201814362. Epub 2019 Feb 6.

Abstract

Non-biaryl atropisomers are valuable in medicine, materials, and catalysis, but their enantioselective synthesis remains a challenge. Herein, a counterion-mediated O-alkylation method for the generation of atropisomeric amides with an er up to 99:1 is outlined. This dynamic kinetic resolution is enabled by the observation that the rate of racemization of atropisomeric naphthamides is significantly increased by the presence of an intramolecular O-H⋅⋅⋅NCO hydrogen bond. Upon O-alkylation of the H-bond donor, the barrier to rotation is significantly increased. Quantum calculations demonstrate that the intramolecular H-bond reduces the rotational barrier about the aryl-amide bond, stabilizing the planar transition state for racemization by approximately 40 kJ mol , thereby facilitating the observed dynamic kinetic resolution.

摘要

非联芳基阻转异构体在医学、材料和催化领域具有重要价值,但其对映选择性合成仍然是一项挑战。本文概述了一种抗衡离子介导的O-烷基化方法,用于生成对映体比例高达99:1的阻转异构酰胺。这种动态动力学拆分是基于以下观察结果实现的:分子内O-H⋅⋅⋅NCO氢键的存在显著提高了阻转异构萘酰胺的外消旋化速率。在对氢键供体进行O-烷基化时,旋转势垒显著增加。量子计算表明,分子内氢键降低了芳基-酰胺键的旋转势垒,使外消旋化的平面过渡态稳定约40 kJ mol,从而促进了观察到的动态动力学拆分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/490f/6492105/54750750c0e1/ANIE-58-2795-g001.jpg

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