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Solvolytic Reactivity of Heptafluorobutyrates and Trifluoroacetates

机译:七氟丁酸酯和三氟乙酸酯的溶剂反应性

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A series of X,Y-substituted benzhydryl heptafluorobutyrates (1-6-HFB) and trifluoroacetates (1- 6-TFA) were subjected to solvolysis in various methanol/water, ethanol/water, and acetone/water mixtures at 25 C. The LFER equation log k=sf(Ef t Nf) was used to derive the nucleofuge-specific parameters (Nf and sf) for SN1-type reaction. In comparison with TFA, the HFB leaving group is a better nucleofuge for less than 0.5 unit of Nf. X,Y-Substituted benzhydryl trifluoroacetates solvolyze by way of SN1 reactions unless electron-withdrawing groups are attached to aromatic rings. In such cases the substrates solvolyze faster than predicted for the SN1 route because of the change in mechanism. X,Y-Substituted benzhydryl heptafluorobutyrates examined here (Ef g -7.7) solvolyze according to the SN1 pathway. The almost parallel log k vs. Ef lines in various solvents for HFBs and TFAs, and the corresponding slope parameters (sf are in the range of 0.91 and 0.83), indicate early TS with moderately advanced charge separation. NBO charges of HFB and TFA anions and the affinities obtained, all calculated at the PCM-B3LYP/6-311tG(2d,p)//PCM-B3LYP/6-311tG(2d, p) level, revealed that the HFB anion slightly better delocalizes the developing negative charge than TFA, and that the affinity of the benzhydrylium ion is slightly larger toward TFA than toward the HFB anion, which is in accordance with the greater solvolytic reactivity of HFB.
机译:在25°C下,将一系列X,Y取代的苯甲基七氟丁酸酯(1-6-HFB)和三氟乙酸酯(1-6-TFA)在各种甲醇/水,乙醇/水和丙酮/水混合物中进行溶剂化。 LFER方程log k = sf(Ef t Nf)用于得出SN1型反应的核试剂特异性参数(Nf和sf)。与TFA相比,HFB离去基团是小于0.5单位Nf的更好的核试剂。除非吸电子基团连接到芳环上,否则X,Y取代的三氟乙酸二氢苯酯会通过SN1反应进行溶剂分解。在这种情况下,由于机理的改变,底物的溶剂分解速度快于SN1路线的预测速度。根据SN1途径,此处检测到的X,Y取代的苯甲基七氟丁酸酯(Ef g -7.7)溶剂分解。在HFB和TFA的各种溶剂中,几乎平行的log k对Ef线以及相应的斜率参数(sf在0.91和0.83的范围内)表明早期的TS具有适度提前的电荷分离。 HFB和TFA阴离子的NBO电荷以及获得的亲和力均在PCM-B3LYP / 6-311tG(2d,p)// PCM-B3LYP / 6-311tG(2d,p)浓度下计算,表明HFB阴离子略有增加与TFA相比,更好地使正在形成的负电荷离域化,并且苯甲酸铵离子对TFA的亲和力比对HFB阴离子的亲和力略大,这与HFB的更高溶剂分解活性有关。

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