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硼基自由基催化实现的选择性[2σ + 2σ]环加成反应:高度取代的双环[3.1.1]庚烷的合成

Selective [2σ + 2σ] Cycloaddition Enabled by Boronyl Radical Catalysis: Synthesis of Highly Substituted Bicyclo[3.1.1]heptanes.

作者信息

Yu Tao, Yang Jinbo, Wang Zhijun, Ding Zhengwei, Xu Ming, Wen Jingru, Xu Liang, Li Pengfei

机构信息

Frontier Institute of Science and Technology and State Key Laboratory for Mechanical Behavior of Materials, Xi'an Jiaotong University, Xi'an 710054, China.

School of Chemistry and Chemical Engineering/Key Laboratory for Green Processing of Chemical Engineering of Xinjiang Bingtuan, Shihezi University, Shihezi 832003, China.

出版信息

J Am Chem Soc. 2023 Feb 10. doi: 10.1021/jacs.2c13740.

Abstract

In contrast to the traditional and widely-used cycloaddition reactions involving at least a π bond component, a [2σ + 2σ] radical cycloaddition between bicyclo[1.1.0]butanes (BCBs) and cyclopropyl ketones has been developed to provide a modular, concise, and atom-economical synthetic route to substituted bicyclo[3.1.1]heptane (BCH) derivatives that are 3D bioisosteres of benzenes and core skeleton of a number of terpene natural products. The reaction was catalyzed by a combination of simple tetraalkoxydiboron(4) compound Bpin and 3-pentyl isonicotinate. The broad substrate scope has been demonstrated by synthesizing a series of new highly functionalized BCHs with up to six substituents on the core with up to 99% isolated yield. Computational mechanistic investigations supported a pyridine-assisted boronyl radical catalytic cycle.

摘要

与传统且广泛使用的至少涉及一个π键组分的环加成反应不同,双环[1.1.0]丁烷(BCB)与环丙基酮之间的[2σ + 2σ]自由基环加成反应已被开发出来,为合成取代的双环[3.1.1]庚烷(BCH)衍生物提供了一种模块化、简洁且原子经济的合成路线,这些衍生物是苯的三维生物电子等排体以及许多萜类天然产物的核心骨架。该反应由简单的四烷氧基二硼(4)化合物Bpin和3 - 戊基异烟酸酯组合催化。通过合成一系列新的高度官能化的BCH,其核心上有多达六个取代基,分离产率高达99%,证明了该反应具有广泛的底物范围。计算机理研究支持了吡啶辅助的硼酰基自由基催化循环。

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