化学
终端(电信)
组合化学
炔烃
催化作用
对映选择合成
化学合成
有机合成
串联
会聚合成
反应条件
第三代
精细化工
纳米技术
立体化学
化学生物学
有机化学
全合成
废止
级联反应
作者
Fen Xu,Zihan Wang,Mai Sun,Luciano Barboni,Yuan Ping Feng,Huanhuan Zhao,Yang Yang,Fan‐Wang Zeng
标识
DOI:10.1002/ejoc.202500651
摘要
The development of one‐step transformations to heterocyclic compounds would considerably boost the synthetic efficiency in organic chemistry. In recent years, numerous examples of the transition‐metal‐catalyzed (TMC) CH activation/annulation strategy have been reported. Despite remarkable progress achieved with internal alkynes, allenes, and alkyne surrogates, terminal alkynes remain challenging substrates. Due to their relatively acidic terminal protons, terminal alkynes easily undergo alternative homocoupling reactions under commonly used oxidative conditions, exhibiting significant difficulties in CH functionalizations. To date, the CH activation involving terminal alkynes remains one of the most promising and appealing areas in organic synthesis. This review provides a comprehensive overview of the current progress in tandem CH activation reactions with terminal alkynes. With a strong emphasis on the catalysis of Rh and Co transition metals, it predominantly covers the synthesis of five‐, six‐membered heterocycles, and fused heterocycles. In this protocol, specific topics, such as purely chemical synthesis, electrochemical synthesis, and enantioselective synthesis, mechanistic details associated with the documented reactions are discussed. In addition, a tactical user guidance for terminal alkynes‐participated CH activation is also put forward.
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