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Theoretical study of the gas-phase ethane C-H and C-C bonds activation by bare niobium cation

机译:裸铌阳离子活化气相乙烷C-H和C-C键的理论研究

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摘要

The potential energy surfaces for the reaction of bare niobium cation with ethane, as a prototype of the C-H and C-C bonds activation in alkanes by transition metal cations, have been investigated employing the Density Functional Theory in its B3LYP formulation. All the minima and key transition states have been examined along both high-and low-spin surfaces. For both the C-H and C-C activation pathways the rate determining step is that corresponding to the insertion of the Nb cation into C-H and C-C bond, respectively. However, along the C-H activation reaction coordinate the barrier that is necessary to overcome is 0.13 eV below the energy of the ground state reactants asymptote, while in the C-C activation branch the corresponding barrier is about 0.58 eV above the energy of reactants in their ground state. The overall calculated reaction exothermicities are comparable. Since the spin of the ground state reactants is different from that of both H-Nb~+-C2H5 and CH3-Nb~+-CH3 insertion intermediates and products, spin multiplicity has to change along the reaction paths. All the obtained results, including Nb~+-R binding energies for R fragments relevant to the examined PESs, have been compared with existing experimental and theoretical data.
机译:裸铌阳离子与乙烷反应的势能面,作为过渡金属阳离子在烷烃中活化C-H和C-C键的原型,已经在其B3LYP配方中采用了密度泛函理论进行了研究。所有最小值和关键过渡状态都已在高旋转和低旋转表面上进行了检查。对于C-H和C-C激活途径,速率确定步骤分别是将Nb阳离子插入C-H和C-C键中。但是,沿着CH活化反应坐标,必须克服的势垒比基态反应物渐近线能量低0.13 eV,而在CC活化分支中,相应的势垒比基态反应物能量高约0.58 eV。 。总体计算的反应放热是可比较的。由于基态反应物的自旋不同于H-Nb〜+ -C2H5和CH3-Nb〜+ -CH3插入中间体和产物的自旋,因此自旋多重性必须沿着反应路径改变。所有获得的结果,包括与被检PES相关的R片段的Nb〜+ -R结合能,都已与现有的实验和理论数据进行了比较。

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