Du Pan, Zhao Jiyang, Liu Shanshan, Yue Zhen
School of Life Science and Chemistry, Jiangsu Second Normal University Nanjing 210013 China.
School of Environmental Science, Nanjing Xiaozhuang University Nanjing 211171 China
RSC Adv. 2021 Jul 12;11(39):24238-24246. doi: 10.1039/d1ra03019a. eCollection 2021 Jul 6.
Bimolecular nucleophilic substitution (S2) is a fundamental reaction that has been widely studied. So far, the nucleophiles are mainly anionic species in S2 reactions. In this study, we use density functional theory calculations to assess the mechanisms of substitution of carbonyl, imidoyl, and vinyl compounds with a neutral nucleophile, pyridine. Charge decomposition analysis is performed to explore the main components of the transition state's LUMO. For reactions of imidoyl or carbonyl compounds with pyridine or Cl, the LUMOs of the transition states are composed of mixed orbitals originating from the nucleophile and the substrate. Considering the unique mixed nature of the orbitals, the reaction mode is termed S ( means mix). Moreover, the main components of the transition state's LUMO are pure σ* MO in the reactions of HC[double bond, length as m-dash]CHCl with pyridine or Cl. Computations were also performed for RY[double bond, length as m-dash]CHX substrates with different X and Y groups (X= Cl, Br, or F; Y = O, N, or C).
双分子亲核取代反应(S2)是一种已被广泛研究的基本反应。到目前为止,在S2反应中亲核试剂主要是阴离子物种。在本研究中,我们使用密度泛函理论计算来评估羰基、亚氨基和乙烯基化合物与中性亲核试剂吡啶的取代反应机理。进行电荷分解分析以探索过渡态最低未占分子轨道(LUMO)的主要成分。对于亚氨基或羰基化合物与吡啶或氯的反应,过渡态的LUMO由源自亲核试剂和底物的混合轨道组成。考虑到轨道独特的混合性质,该反应模式被称为S(表示混合)。此外,在HC≡CHCl与吡啶或氯的反应中,过渡态LUMO的主要成分是纯σ*分子轨道。还对具有不同X和Y基团(X = Cl、Br或F;Y = O、N或C)的RY≡CHX底物进行了计算。