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钯催化的生物催化衍生环状 1,3-二烯的立体选择性芳基化反应:通过 Heck 型机理的手性转移。

Palladium Catalyzed Stereoselective Arylation of Biocatalytically Derived Cyclic 1,3-Dienes: Chirality Transfer via a Heck-Type Mechanism.

机构信息

Department of Chemistry and Chemical Engineering, Chalmers University of Technology, SE-41296 Gothenburg, Sweden.

Data Science and Modelling, Pharmaceutical Sciences, R&D, AstraZeneca Gothenburg, SE-43183 Mölndal, Sweden.

出版信息

Org Lett. 2020 Mar 20;22(6):2464-2469. doi: 10.1021/acs.orglett.0c00708. Epub 2020 Mar 9.

Abstract

Microbial arene oxidation of benzoic acid with B9 provides a chiral highly functionalized cyclohexadiene, suitable for further structural diversification. Subjecting this scaffold to a Pd-catalyzed Heck reaction effects a regio- and stereoselective arylation of the cyclohexadiene ring, with 1,3-chirality transfer of stereogenic information installed in the microbial arene oxidation. Quantum chemical calculations explain the selectivity both by a kinetic preference for the observed arylation position and by reversible carbopalladation in competing positions. Further product transformation allowed the formation of a tricyclic ketone possessing four stereogenic centers. This demonstrates the capability of the method to introduce stereochemical complexity from planar nonchiral benzoic acid in just a few steps.

摘要

微生物芳烃氧化苯甲酸与 B9 提供了一个手性高度官能化的环己二烯,适合进一步的结构多样化。将这个支架进行钯催化的 Heck 反应,对环己二烯环进行区域和立体选择性芳基化,微生物芳烃氧化中立体信息的 1,3-手性转移被安装。量子化学计算通过对观察到的芳基化位置的动力学偏好和竞争位置可逆的碳钯化来解释选择性。进一步的产物转化允许形成具有四个立体中心的三环酮。这证明了该方法在手性复杂的平面非手性苯甲酸的几个步骤中引入立体化学复杂性的能力。

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