Department of Chemistry, Binghamton University, Binghamton, NY, 13902, USA.
Chemistry. 2018 Jun 7;24(32):8098-8102. doi: 10.1002/chem.201801748. Epub 2018 May 14.
A combination of experimental C kinetic isotope effects (KIEs) and high-level density functional theory (DFT) calculations is used to distinguish between "enamine" and "enol" mechanisms in the Michael addition of acetone to trans-β-nitrostyrene catalyzed by Jacobsen's primary amine thiourea catalyst. In light of the recent findings that the widely used O-incorporation probe for these mechanisms is flawed, the results described in this communication demonstrate an alternative probe to distinguish between these pathways. A key advantage of this probe is that quantitative mechanistic information is obtained without modifying experimental conditions. This approach is expected to find application in resolving mechanistic debates, while providing valuable information about the key transition state of organocatalyzed reactions involving the α-functionalization of carbonyls.
采用实验 C 动力学同位素效应 (KIE) 和高精度密度泛函理论 (DFT) 计算相结合的方法,对 Jacobsen 伯胺硫脲催化剂催化下丙酮与反式-β-硝基苯乙烯的迈克尔加成反应中的“烯胺”和“烯醇”机理进行区分。鉴于最近发现广泛用于这些机理的 O 掺入探针存在缺陷,本通讯中描述的结果表明了一种可用于区分这些途径的替代探针。该探针的一个关键优势是,无需改变实验条件即可获得定量的机理信息。这种方法有望在解决机理争议方面得到应用,同时为涉及羰基α-官能化的有机催化反应的关键过渡态提供有价值的信息。