Su Peifeng, Li Yinwu, Ke Zhuofeng
School of Materials Science and Engineering, PCFM Lab, Sun Yat-sen University, Guangzhou, 510006, P. R. China.
Chem Asian J. 2021 Nov 2;16(21):3427-3436. doi: 10.1002/asia.202100772. Epub 2021 Sep 8.
Bifunctional transition metal complexes are of particular interest in metal-ligand cooperative activation of small molecules. As a novel type of bifunctional catalyst, Lewis acid transition metal (LA-TM) complexes have attracted increasing interest in hydrogen activation and storage. To advance the catalyst design, herein the metal effect of LA-TM complexes on the hydrogen activation has been systematically studied with a series of tris(phosphino)borane (TPB) complexes with V, Cr, Mn, Fe, Co, and Ni as metal centers. The metal effect not only influences the mechanism of hydrogen activation, but also notably casts a volcano plot for the activity. TPB complexes of V, Cr, Mn, Fe, and Co tend to activate H through a stepwise mechanism, while TPB-Ni prefers a synergetic mechanism for H activation. More importantly, the metal effect significantly influences the activity of H activation and the formation of the LA-H-TM bridging hydride. The trend of changes in the LA-H-TM structures, the second-order perturbation stabilization energies, and the Laplacian bond orders, along with different metals (from V to Ni), are all interestingly constitute volcano plots for the performance of TPB-TM complexes catalyzed H activation. TPB-Mn and TPB-Fe are found to be the optimal catalysts among the discussed TPB-TM complexes. The volcano plots disclosed for the metal effects should be informative and instructive for homogeneous and heterogeneous LA-TM catalysts development.
双功能过渡金属配合物在小分子的金属-配体协同活化方面具有特别的研究价值。作为一种新型双功能催化剂,路易斯酸过渡金属(LA-TM)配合物在氢活化与储存方面已引起越来越多的关注。为了推动催化剂设计,本文以一系列以V、Cr、Mn、Fe、Co和Ni为金属中心的三(膦基)硼烷(TPB)配合物,系统地研究了LA-TM配合物对氢活化的金属效应。金属效应不仅影响氢活化的机理,还显著地绘制出了活性的火山曲线。V、Cr、Mn、Fe和Co的TPB配合物倾向于通过分步机理活化H,而TPB-Ni则更倾向于通过协同机理活化H。更重要的是,金属效应显著影响氢活化的活性以及LA-H-TM桥连氢化物的形成。随着不同金属(从V到Ni)的变化,LA-H-TM结构、二阶微扰稳定能和拉普拉斯键级的变化趋势,有趣地构成了TPB-TM配合物催化氢活化性能的火山曲线。在讨论的TPB-TM配合物中,TPB-Mn和TPB-Fe被发现是最优催化剂。所揭示的关于金属效应的火山曲线对于均相和非均相LA-TM催化剂的开发应具有参考和指导意义。