化学
烷基化
催化作用
对映选择合成
烯丙基重排
组合化学
铁质
甲烷氧化偶联
产量(工程)
铁
密度泛函理论
催化循环
光化学
有机化学
计算化学
材料科学
冶金
作者
Nian Xu,Maoping Pu,Yu Han,Gaofei Yang,Xiaohua Liu,Xiaoming Feng
标识
DOI:10.1002/ange.202314256
摘要
Abstract The direct α‐alkylation of acyclic carbonyls with nonactivated hydrocarbons through C(sp 3 )−H functionalization is both extremely promising and notably challenging, especially when attempting to achieve enantioselectivity using iron‐based catalysts. We have identified a robust chiral iron complex for the oxidative cross‐coupling of 2‐acylimidazoles with benzylic and allylic hydrocarbons, as well as nonactivated alkanes. The readily available and tunable N,N ′‐dioxide catalysts of iron in connection with oxidants exhibit precise asymmetric induction (up to 99 % ee ) with good compatibility in moderate to good yields (up to 88 % yield). This protocol provides an elegant and straightforward access to optically active acyclic carbonyl derivatives starting from simple alkanes without prefunctionalization. Density functional theory (DFT) calculations and control experiments were made to gain insight into the nature of C−C bond formation and the origin of enantioselectivity. We propose a radical‐radical cross‐coupling process enabled by the immediate interconversion between chiral ferric species and ferrous species.
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