Xin Jie, Zhang Guanghui, Deng Yi, Zhang Heng, Lei Aiwen
College of Chemistry and Molecular Sciences, the Institute for Advanced Studies (IAS), Wuhan University, Wuhan, Hubei 430072, P. R. China.
Dalton Trans. 2015 Dec 14;44(46):19777-81. doi: 10.1039/c5dt03386a.
The difference between Pd and Ni has been investigated based on the Negishi-type oxidative coupling reactions in which reductive elimination was proved to be the rate determining step. Although DFT calculations illustrate that the Pd catalyzed reaction should be faster than the Ni catalyzed reaction under these conditions, kinetic experiments indicate that the reaction rate of Pd and Ni is dependent on the concentration of the catalyst precursor. The Pd catalyzed reaction is faster than the Ni catalyzed reaction only when the precursor concentration is as low as 1 × 10(-7) M.
基于根岸型氧化偶联反应对钯(Pd)和镍(Ni)之间的差异进行了研究,在该反应中还原消除被证明是速率决定步骤。尽管密度泛函理论(DFT)计算表明在这些条件下钯催化的反应应该比镍催化的反应更快,但动力学实验表明钯和镍的反应速率取决于催化剂前体的浓度。只有当前体浓度低至1×10⁻⁷ M时,钯催化的反应才比镍催化的反应更快。