Key Laboratory of the Ministry of Education for Advanced Catalysis Materials, Department of Chemistry, Zhejiang Normal University, 688 Yingbin Road, Jinhua, 321004, P. R. China.
Angew Chem Int Ed Engl. 2022 Jan 3;61(1):e202110864. doi: 10.1002/anie.202110864. Epub 2021 Nov 22.
Cyclopentenes and indenes are important structural scaffolds in synthetic, medical, and material chemistry. Cyclization of alkynes via remote C-H functionalization is an appealing approach to construct these motifs due to its high efficiency and step-economy. Herein, a traceless directing group strategy was designed to reverse the regioselectivity of radical addition which enabled an unprecedented photocatalytic sulfonylcarbocyclization of terminal alkynes by forming C-C bond on inert C(sp )-H bond. It offers a facile access to decorated cyclopentenes and indenes under mild conditions. The resultant products could be converted into a set of valuable molecular scaffolds, including a key intermediate of AM-6226. Mechanistic experiments suggest a radical cascade pathway comprising a Markovnikov-type sulfonylation, 1,5-hydrogen atom transfer, 5-endo-trig cyclization, and β-elimination. This study lays further groundwork for the use of anti-Baldwin 5-endo-trig radical cyclization in rapidly assembling five-membered carbocycles.
环戊烯和茚满是合成、医学和材料化学中重要的结构骨架。炔烃通过远程 C-H 功能化环化是构建这些结构的一种很有吸引力的方法,因为它具有高效率和经济性。本文设计了一种无痕迹导向基团策略来反转自由基加成的区域选择性,从而通过在惰性 C(sp3)-H 键上形成 C-C 键,实现了前所未有的末端炔烃的光催化砜基环化。它在温和的条件下为装饰性的环戊烯和茚满提供了一种简便的方法。得到的产物可以转化为一组有价值的分子支架,包括 AM-6226 的关键中间体。机理实验表明,这是一个包含 Markovnikov 型磺酰化、1,5-氢原子转移、5-endo-trig 环化和β-消除的自由基级联途径。这项研究为在快速组装五元碳环中使用反 Baldwin 5-endo-trig 自由基环化奠定了进一步的基础。