节点文献
A Computational Study on the DMAP-Catalyzed Regioselective [2+4] Cyclization of Allenic Ester with Cyclic Ketimine
【Author】 Liu,Qiuli;Li,Xue;Wang,Yang;Wei,Donghui;The College of Chemistry and Molecular Engineering,Zhengzhou University;Department of Material and Chemical Engineering,Zhengzhou University of Light Industry;
【摘要】 Based on the experiment,[1] the mechanism of [2 + 4] cyclization of allenic esters and cyclic ketimines catalyzed by 4-dimethylaminopyridine(DMAP) for forming highly functionalized hydropyridine derivatives has been theoretically studied using density functional theory(DFT), which had been used to study the mechanisms of organocatalytic reactions.[2-7] We have considered and studied three possible channels, including the DMAP-catalyzed [β,γ]-/[α,β]-[2 + 4] cyclization(denoted as channel A/B) and the direct [β,γ]-[2 + 4] cyclization(denoted as direct channel). According to the calculated results, channel A is revealed to be the most energetically favorable among the three channels and its generated product is the main product, which is consistent with the experimental observation. The most favorable channel A contains several steps, i.e., nucleophilic addition on the Cβ atom of allenic ester by DMAP, the stepwise [β,γ]-[2 + 4] cyclization with ketimine, and the dissociation of DMAP with product. The analyses of the global reactivity index(GRI) and frontier molecular orbital(FMO) suggest that DMAP not only enhances the allenic ester’s nucleophilicity but also narrows the energy gap of FMOs involved in the [2 + 4] cyclization, which makes the reaction easier to happen. Moreover, the non-covalent interaction(NCI) analysis explains the origin of regioselectivity of the reaction.
【Abstract】 Based on the experiment,[1] the mechanism of [2 + 4] cyclization of allenic esters and cyclic ketimines catalyzed by 4-dimethylaminopyridine(DMAP) for forming highly functionalized hydropyridine derivatives has been theoretically studied using density functional theory(DFT), which had been used to study the mechanisms of organocatalytic reactions.[2-7] We have considered and studied three possible channels, including the DMAP-catalyzed [β,γ]-/[α,β]-[2 + 4] cyclization(denoted as channel A/B) and the direct [β,γ]-[2 + 4] cyclization(denoted as direct channel). According to the calculated results, channel A is revealed to be the most energetically favorable among the three channels and its generated product is the main product, which is consistent with the experimental observation. The most favorable channel A contains several steps, i.e., nucleophilic addition on the Cβ atom of allenic ester by DMAP, the stepwise [β,γ]-[2 + 4] cyclization with ketimine, and the dissociation of DMAP with product. The analyses of the global reactivity index(GRI) and frontier molecular orbital(FMO) suggest that DMAP not only enhances the allenic ester’s nucleophilicity but also narrows the energy gap of FMOs involved in the [2 + 4] cyclization, which makes the reaction easier to happen. Moreover, the non-covalent interaction(NCI) analysis explains the origin of regioselectivity of the reaction.
- 【会议录名称】 河南省化学会2018年学术年会摘要集
- 【会议名称】河南省化学会2018年学术年会
- 【会议时间】2018-09-28
- 【会议地点】中国河南新乡
- 【分类号】O621.251
- 【主办单位】河南省化学会