Costa Anna M, Cascales Víctor, Castro-Alvarez Alejandro, Vilarrasa Jaume
Organic Chemistry Section, Facultat de Química, Universitat de Barcelona, Diagonal 645, 08028 Barcelona, Catalonia, Spain.
ACS Omega. 2022 May 26;7(22):18247-18258. doi: 10.1021/acsomega.1c07020. eCollection 2022 Jun 7.
The tendency of carbonyl compounds to form iminium ions by reaction with pyrrolidine or chiral pyrrolidine derivatives (in other words, the relative stability to hydrolysis of these iminium ions) has been computationally examined, mainly using the M06-2X/6-311+G(d,p) method. We have thus obtained the equilibrium positions for R-CH=O + CH=CH-CH=NR* → R-CH=NR* + CH=CH-CH=O reactions and for related exchanges. In these exchanges, there is a transfer of a secondary amine between two carbonyl compounds. Their relative energies may be used to predict which iminium species can be predominantly formed when two or more carbonyl groups are present in a reaction medium. In the catalytic Michael additions of nucleophiles to iminium ions arising from conjugated enals, dienals, and trienals, if the formation of the new Nu-C bond is favorable, the chances of amino-catalyzed reactions to efficiently proceed, with high conversions, depend on the calculated energy values for these exchange equilibria, where the iminium tetrafluoroborates of the adducts (final iminium intermediates) must be more prone to hydrolysis than the initial iminium tetrafluoroborates. The density functional theory (DFT) calculations indicate that the MacMillan catalysts and related oxazolidinones are especially suitable in this regard.
通过与吡咯烷或手性吡咯烷衍生物反应(即这些亚胺离子对水解的相对稳定性),羰基化合物形成亚胺离子的倾向已通过计算进行了研究,主要使用M06 - 2X/6 - 311 + G(d,p)方法。我们由此获得了R - CH = O + CH = CH - CH = NR* → R - CH = NR* + CH = CH - CH = O反应及相关交换反应的平衡位置。在这些交换反应中,两个羰基化合物之间会发生仲胺的转移。它们的相对能量可用于预测当反应介质中存在两个或更多羰基时,哪种亚胺物种会占主导地位。在亲核试剂对共轭烯醛、二烯醛和三烯醛产生的亚胺离子的催化迈克尔加成反应中,如果新的Nu - C键的形成是有利的,氨基催化反应高效进行且具有高转化率的机会取决于这些交换平衡的计算能量值,其中加合物(最终亚胺中间体)的四氟硼酸亚胺必须比初始四氟硼酸亚胺更易于水解。密度泛函理论(DFT)计算表明,麦克米伦催化剂及相关恶唑烷酮在这方面特别适用。