University of Zagreb , Faculty of Pharmacy and Biochemistry, A. Kovačića 1, 10000 Zagreb, Croatia.
J Org Chem. 2012 Oct 19;77(20):8986-98. doi: 10.1021/jo3013308. Epub 2012 Sep 27.
Nucleofugalities of pentafluorobenzoate (PFB) and 2,4,6-trifluorobenzoate (TFB) leaving groups have been derived from the solvolysis rate constants of X,Y-substituted benzhydryl PFBs and TFBs measured in a series of aqueous solvents, by applying the LFER equation: log k = s(f)(E(f) + N(f)). The heterolysis rate constants of dianisylmethyl PFB and TFB, and those determined for 10 more dianisylmethyl benzoates in aqueous ethanol, constitute a set of reference benzoates whose experimental ΔG(‡) have been correlated with the ΔH(‡) (calculated by PCM quantum-chemical method) of the model epoxy ring formation. Because of the excellent correlation (r = 0.997), the method for calculating the nucleofugalities of substituted benzoate LGs have been established, ultimately providing a method for determination of the S(N)1 reactivity for any benzoate in a given solvent. Using the ΔG(‡) vs ΔH(‡) correlation, and taking s(f) based on similarity, the nucleofugality parameters for about 70 benzoates have been determined in 90%, 80%, and 70% aqueous ethanol. The calculated intrinsic barriers for substituted benzoate leaving groups show that substrates producing more stabilized LGs proceed over lower intrinsic barriers. Substituents on the phenyl ring affect the solvolysis rate of benzhydryl benzoates by both field and inductive effects.
五氟苯甲酸(PFB)和 2,4,6-三氟苯甲酸(TFB)离去基团的亲核性已从 X、Y-取代的苯甲酰基 PFB 和 TFB 在一系列水溶剂中的溶剂解速率常数推导得出,应用 LFER 方程:log k = s(f)(E(f) + N(f))。二茴香基甲基 PFB 和 TFB 的异裂速率常数,以及在水乙醇中测定的另外 10 种二茴香基甲基苯甲酸酯的那些,构成了一组参考苯甲酸酯,其实验 ΔG(‡)已与模型环形成的 ΔH(‡)(通过 PCM 量子化学方法计算)相关联。由于出色的相关性(r = 0.997),建立了取代苯甲酸酯 LG 的亲核性计算方法,最终为在给定溶剂中任何苯甲酸酯的 S(N)1 反应性提供了一种方法。使用 ΔG(‡)与 ΔH(‡)的相关性,并基于相似性采用 s(f),已在 90%、80%和 70%的水乙醇中确定了约 70 种苯甲酸酯的亲核性参数。取代苯甲酸酯离去基团的计算固有势垒表明,产生更稳定 LG 的底物需要较低的固有势垒。苯环上的取代基通过场和诱导效应共同影响苯甲酰基苯甲酸酯的溶剂解速率。