van Bochove Marc A, Swart Marcel, Bickelhaupt F Matthias
Department of Theoretical Chemistry and Amsterdam Center for Multiscale Modeling, Scheikundig Laboratorium der Vrije Universiteit, De Boelelaan 1083, NL-1081 HV Amsterdam, Netherlands.
Phys Chem Chem Phys. 2009 Jan 14;11(2):259-67. doi: 10.1039/b813152j. Epub 2008 Oct 29.
We have studied the mechanism of S(N)2@P reactions in the model systems X(-) + PMe(2)Y and X(-) + POR(2)Y (with R=Me, OH, OMe; and X, Y=Cl, OH, MeO) using density functional theory at OLYP/TZ2P. Our main purpose is to analyze the nature of the Walden inversion in our model nucleophilic substitution reactions. Walden inversion is well-known to proceed, in general, as a concerted umbrella motion of the substituents at the central atom. Interestingly, we find here that, in certain model reactions, Walden inversion can also proceed in a stepwise fashion in which the individual substituents of the umbrella flip, consecutively, from the educt to the product conformation via separate barriers on the reaction profile. We also examine how variation in nucleophile and leaving group may tune the pentavalent transition structure between labile transition state (TS) and stable transition complex (TC). Furthermore, we explore the various competing multistep pathways in the symmetric (X=Y) and asymmetric (X not equal Y) substitution reactions in our model reaction systems.
我们利用密度泛函理论(OLYP/TZ2P)研究了模型体系X(-) + PMe(2)Y和X(-) + POR(2)Y(其中R = Me、OH、OMe;X、Y = Cl、OH、MeO)中S(N)2@P反应的机理。我们的主要目的是分析模型亲核取代反应中瓦尔登反转的本质。众所周知,瓦尔登反转通常以中心原子上取代基的协同伞状运动进行。有趣的是,我们在此发现,在某些模型反应中,瓦尔登反转也可以逐步进行,其中伞状结构的各个取代基通过反应历程上的单独势垒,从反应物构象依次翻转到产物构象。我们还研究了亲核试剂和离去基团的变化如何调节不稳定过渡态(TS)和稳定过渡络合物(TC)之间的五价过渡结构。此外,我们探索了模型反应体系中对称(X = Y)和不对称(X≠Y)取代反应中各种相互竞争的多步途径。