College of Materials, Chemistry and Chemical Engineering, Hangzhou Normal University, Hangzhou 311121, China.
Chem Soc Rev. 2021 Mar 15;50(5):3263-3314. doi: 10.1039/d0cs00447b.
Olefinic C-H functionalization represents an atom- and step economic approach to valuable olefin derivatives from simpler ones, but controlling the selectivity remains a challenge. Remarkable progress has been made in the site-selective C-H functionalization of arenes and alkanes, but there are still limited examples of selective C-H functionalization of olefins presumably due to the lability and easy decomposition of the alkenyl moiety. Chelation-assisted C-H activation represents an efficient protocol for site- and stereo-selective construction of carbon-carbon and carbon-heteroatom bonds. This review highlights recent advances in vicinal- and geminal-group-directed olefinic C-H functionalization, including alkenylation, arylation, alkynylation, alkylation, halogenation, silylation, cyanation and annulation by the formation of exo-/endo-metallocycles. In particular, geminal-group-directed C-H functionalization is covered for the first time, as well as distal-selective alkenyl C-H functionalization under palladium/norbornene cooperative catalysis, which provides novel disconnections in retrosynthetic analysis and represents the future trend in green chemistry.
烯烃 C-H 功能化代表了一种从简单烯烃衍生出有价值烯烃衍生物的原子经济性和步骤经济性方法,但选择性控制仍然是一个挑战。在芳烃和烷烃的位点选择性 C-H 官能化方面已经取得了显著的进展,但烯烃的选择性 C-H 官能化仍然只有有限的例子,这可能是由于烯基部分的不稳定性和容易分解。螯合辅助 C-H 活化是构建碳-碳和碳-杂原子键的位点和立体选择性的有效方法。本文综述了最近在邻位和偕位基团导向的烯烃 C-H 官能化方面的进展,包括烯基化、芳基化、炔基化、烷基化、卤化、硅烷基化、氰基化和通过形成外/内金属环的稠环化。特别是,首次涵盖了偕位基团导向的 C-H 官能化,以及钯/降冰片烯协同催化下的远程选择性烯基 C-H 官能化,这在逆合成分析中提供了新的切断,并代表了绿色化学的未来趋势。