Zhen Wenqing, Zhao Siwei, Fu Gang, Wang Hongyi, Sun Jianmin, Yang Li, Zhang Jiaxu
State Key Laboratory of Urban Water Resource and Environment, School of Chemistry and Chemical Engineering, Harbin Institute of Technology, Harbin 150001, China.
Molecules. 2023 Aug 27;28(17):6269. doi: 10.3390/molecules28176269.
The competition between base-induced elimination (E2) and bimolecular nucleophilic substitution (S2) is of significant importance in organic chemistry and is influenced by many factors. The electronic structure calculations for the gas-phase reactions of F + RY (R = CH, CH, CH, CH, and Y = Cl, I) are executed at the MP2 level with aug-cc-pVDZ or ECP/d basis set to investigate the α-methyl substitution effect. The variation in barrier height, reaction enthalpy, and competition of S2/E2 as a function of methyl-substitution and leaving group ability has been emphasized. And the nature of these rules has been explored. As the degree of methyl substitution on α-carbon increases, the E2 channel becomes more competitive and dominant with R varying from CH, CH, to CH. Energy decomposition analysis offers new insights into the competition between E2 and S2 processes, which suggests that the drop in interaction energy with an increasing degree of substitution cannot compensate for the rapid growth of preparation energy, leading to a rapid increase in the S2 energy barrier. By altering the leaving group from Cl to I, the barriers of both S2 and E2 monotonically decrease, and, with the increased number of substituents, they reduce more dramatically, which is attributed to the looser transition state structures with the stronger leaving group ability. Interestingly, ∆ exhibits a positive linear correlation with reaction enthalpy (∆) and halogen electronegativity. With the added number of substituents, the differences in ∆ and ∆ between Y = Cl and I likewise exhibit good linearity.
碱诱导消除反应(E2)与双分子亲核取代反应(S2)之间的竞争在有机化学中具有重要意义,且受多种因素影响。采用aug-cc-pVDZ或ECP/d基组在MP2水平上对F + RY(R = CH、CH、CH、CH,Y = Cl、I)的气相反应进行电子结构计算,以研究α-甲基取代效应。重点研究了势垒高度、反应焓以及S2/E2竞争随甲基取代和离去基团能力的变化情况,并探讨了这些规律的本质。随着α-碳上甲基取代程度的增加,当R从CH、CH变化到CH时,E2通道变得更具竞争力且占主导地位。能量分解分析为E2和S2过程之间的竞争提供了新的见解,这表明随着取代程度的增加,相互作用能的下降无法补偿制备能的快速增长,导致S2能垒迅速增加。通过将离去基团从Cl改为I,S2和E2的势垒均单调下降,并且随着取代基数量的增加,它们下降得更显著,这归因于离去基团能力越强,过渡态结构越松散。有趣的是,∆与反应焓(∆)和卤素电负性呈正线性相关。随着取代基数量的增加,Y = Cl和I之间∆和∆的差异同样呈现出良好的线性关系。