Institute for Ion Physics and Applied Physics, Universität Innsbruck, Technikerstraße 25, Innsbruck 6020, Austria.
Laboratory of Molecular Structure and Dynamics, Institute of Chemistry, Eötvös University, PO Box 32, Budapest 112 1518, Hungary.
Nat Chem. 2016 Feb;8(2):151-6. doi: 10.1038/nchem.2400. Epub 2015 Nov 30.
In addition to the nucleophile and solvent, the leaving group has a significant influence on SN2 nucleophilic substitution reactions. Its role is frequently discussed with respect to reactivity, but its influence on the reaction dynamics remains unclear. Here, we uncover the influence of the leaving group on the gas-phase dynamics of SN2 reactions in a combined approach of crossed-beam imaging and dynamics simulations. We have studied the reaction F(-) + CH3Cl and compared it to F(-) + CH3I. For the two leaving groups, Cl and I, we find very similar structures and energetics, but the dynamics show qualitatively different features. Simple scaling of the leaving group mass does not explain these differences. Instead, the relevant impact parameters for the reaction mechanisms are found to be crucial and the differences are attributed to the relative orientation of the approaching reactants. This effect occurs on short timescales and may also prevail in solution-phase conditions.
除了亲核试剂和溶剂外,离去基团对 SN2 亲核取代反应有重大影响。其作用通常在反应性方面进行讨论,但它对反应动力学的影响尚不清楚。在这里,我们通过交叉束成像和动力学模拟相结合的方法,揭示了离去基团对 SN2 反应在气相动力学中的影响。我们研究了 F(-) + CH3Cl 反应,并将其与 F(-) + CH3I 进行了比较。对于 Cl 和 I 这两种离去基团,我们发现它们的结构和能量非常相似,但动力学表现出明显不同的特征。简单地将离去基团的质量进行缩放并不能解释这些差异。相反,对于反应机制的相关影响参数是关键的,差异归因于接近反应物的相对取向。这种效应发生在短时间尺度内,在溶液相条件下也可能存在。