Martínez-Laguna Jonathan, Altarejos Julia, Fuentes M Ángeles, Sciortino Giuseppe, Maseras Feliu, Carreras Javier, Caballero Ana, Pérez Pedro J
Departamento de Química and Laboratorio de Catálisis Homogénea, Unidad Asociada al CSIC, CIQSO-Centro de Investigación en Química Sostenible, Universidad de Huelva, Huelva 21007, Spain.
Departamento de Química Orgánica y Química Inorgánica, Instituto de Investigación Química "Andrés M. del Río" (IQAR), Universidad de Alcalá, Alcalá de Henares, Madrid 28805, Spain.
J Am Chem Soc. 2024 Dec 11;146(49):34014-34022. doi: 10.1021/jacs.4c13065. Epub 2024 Nov 25.
In this mixed computational and experimental study, we report a catalytic system for alkane C-C functionalization in which the responsible step for C-H bond activation shows no barrier in the potential energy path. DFT modeling of three silver-based catalysts and four diazo compounds led to the conclusion that the TpAg═C(H)CF (Tp = fluorinated trispyrazolylborate ligand) carbene intermediates interact with methane without a barrier in the potential energy surface, a prediction validated by experimentation using N═C(H)CF as the carbene source. The array of alkanes from propane to -hexane led to the preferential functionalization of the primary sites with unprecedented values of selectivity for an acceptor diazo compound. The lack of those barriers implies that selectivity can no longer be controlled by differences in the energy barriers. Molecular dynamics calculations (with propane as the model alkane) are consistent with the preferential functionalization of the primary sites due to a higher concentration of such C-H bonds in the vicinity of the carbenic carbon atom.
在这项计算与实验相结合的研究中,我们报道了一种用于烷烃碳 - 碳官能化的催化体系,其中碳 - 氢键活化的关键步骤在势能路径上没有能垒。对三种银基催化剂和四种重氮化合物的密度泛函理论(DFT)建模得出结论,TpAg═C(H)CF(Tp = 氟化三吡唑基硼酸酯配体)卡宾中间体与甲烷在势能面上相互作用时没有能垒,这一预测通过使用N═C(H)CF作为卡宾源的实验得到了验证。从丙烷到己烷的一系列烷烃导致了伯位的优先官能化,对于受体重氮化合物具有前所未有的选择性值。这些能垒的缺失意味着选择性不再能通过能垒的差异来控制。分子动力学计算(以丙烷作为模型烷烃)与伯位的优先官能化相一致,这是由于在卡宾碳原子附近此类碳 - 氢键的浓度较高。