Gallegos Miguel, Costales Aurora, Martín Pendás Ángel
Department of Analytical and Physical Chemistry, University of Oviedo, E-33006 Oviedo, Spain.
J Phys Chem A. 2022 Mar 24;126(11):1871-1880. doi: 10.1021/acs.jpca.2c00415. Epub 2022 Mar 15.
Bimolecular nucleophilic substitution (S2) and elimination (E2) reactions are prototypical examples of competing reaction mechanisms, with fundamental implications in modern chemical synthesis. Steric hindrance (SH) is often considered to be one of the dominant factors determining the most favorable reaction out of the S2 and E2 pathways. However, the picture provided by classical chemical intuition is inevitably grounded on poorly defined bases. In this work, we try to shed light on the aforementioned problem through the analysis and comparison of the evolution of the steric energy (), settled within the IQA scheme and experienced along both reaction mechanisms. For such a purpose, the substitution and elimination reactions of a collection of alkyl bromides (R-Br) with the hydroxide anion (OH) were studied in the gas phase at the M06-2X/aug-cc-pVDZ level of theory. The results show that, generally, recovers the appealing trends already anticipated by chemical intuition and organic chemistry, supporting the role that SH is classically claimed to play in the competition between S2 and E2 reactions.
双分子亲核取代(S2)和消除(E2)反应是竞争反应机制的典型例子,在现代化学合成中具有重要意义。空间位阻(SH)通常被认为是决定S2和E2途径中最有利反应的主要因素之一。然而,经典化学直觉所提供的情况不可避免地建立在定义不明确的基础上。在这项工作中,我们试图通过分析和比较在IQA方案内确定并在两种反应机制中经历的空间能()的演变,来阐明上述问题。为此,在理论水平为M06-2X/aug-cc-pVDZ的气相中研究了一系列溴代烷(R-Br)与氢氧根阴离子(OH)的取代和消除反应。结果表明,一般来说,能恢复化学直觉和有机化学已经预期的有吸引力的趋势,支持了经典理论中SH在S2和E2反应竞争中所起的作用。