Departamento de Ciências Naturais, Universidade Federal de São João del-Rei, 36301-160, São João del-Rei, MG, Brazil.
Org Biomol Chem. 2021 Mar 11;19(9):1900-1914. doi: 10.1039/d0ob02413a.
The environment enclosing an ionic species has a critical effect on its reactivity. In a more general sense, medium effects are not limited to the solvent, but involve the counter ion effect (ion pairing), formation of larger aggregates and structured environment as provided by the host in the case of host-guest complexes. In this review, a general view of the medium effect on anion-molecule reactions is presented. Nucleophilic substitution reactions of aliphatic (SN2) and aromatic (SNAr) systems, as well as elimination reactions (E2), are the focus of the discussion. In particular, nucleophilic fluorination with KF, CsF and tetraalkylammonium fluoride was used as the main model, because of the importance of this kind of reaction and the recent advances in the study of these systems. The solvent effect, ion pairing, formation of aggregates and formation of complexes with crown ethers, cryptands and calixarenes are discussed. For a deeper insight into the medium effect, many results of reliable theoretical calculations in close agreement with experiments were chosen as examples.
环境包围离子物种对其反应性有至关重要的影响。从更广义的角度来看,介质效应不仅限于溶剂,还涉及抗衡离子效应(离子对形成)、较大聚集体的形成以及在主体-客体配合物的情况下由主体提供的结构化环境。在这篇综述中,呈现了对阴离子-分子反应的介质效应的总体看法。讨论的重点是脂肪族(SN2)和芳香族(SNAr)体系的亲核取代反应以及消除反应(E2)。特别是,使用 KF、CsF 和四烷基氟化铵的亲核氟化作为主要模型,因为这种反应的重要性以及这些体系的研究最近取得了进展。讨论了溶剂效应、离子对形成、聚集体的形成以及与冠醚、cryptands 和 calixarenes 的配合物的形成。为了更深入地了解介质效应,选择了许多与实验结果非常吻合的可靠理论计算结果作为实例。