Modular Synthesis of Fully‐Substituted and Configuration‐Defined Alkyl Vinyl Ethers Enabled by Dual‐Functional Copper Catalysis

Author:

Jiang Zhong‐Tao1,Chen Zhengzhao1,Xia Ying1ORCID

Affiliation:

1. West China School of Public Health and West China Fourth Hospital West China-PUMC C.C. Chen Institute of Health, and State Key Laboratory of Biotherapy Sichuan University 610041 Chengdu China

Abstract

AbstractHere we present a modular, chemo‐, regio‐, and stereoselective synthesis of fully‐substituted and configuration‐defined alkyl vinyl ethers (AVEs) using simple chemical feedstocks. The distinctive approach involves the chemo‐ and regioselective functionalization of the CF2 unit in gem‐difluorinated cyclopropanes with O−H and C−H nucleophiles in a specific order. The resulting highly functionalized cyclopropanyl ethers then undergo a stereoselective ring‐opening process to produce fully‐substituted and configuration‐defined AVEs. These AVEs are rarely accessible through conventional methods and are easily transformable. Mechanistic experiments indicate that the success of this method relies on the use of dual‐functional copper catalysis, which is involved in both the functionalization of the CF2 unit and the subsequent ring‐opening process.

Funder

National Natural Science Foundation of China

Thousand Young Talents Program of China

Publisher

Wiley

Subject

General Medicine

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5. Synthesis of Novel GABA Uptake Inhibitors. 3. Diaryloxime and Diarylvinyl Ether Derivatives of Nipecotic Acid and Guvacine as Anticonvulsant Agents

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