Chen Gui, Ma Li, Lo Po-Kam, Mak Chi-Keung, Lau Kai-Chung, Lau Tai-Chu
Dongguan Cleaner Production Technology Center, School of Environment and Civil Engineering, Dongguan University of Technology Dongguan Guangdong 523808 China.
Department of Chemistry, Jinan University Guangzhou 510632 China.
Chem Sci. 2020 Oct 21;12(2):632-638. doi: 10.1039/d0sc04069j.
Metal oxo (M[double bond, length as m-dash]O) complexes are common oxidants in chemical and biological systems. The use of Lewis acids to activate metal oxo species has attracted great interest in recent years, especially after the discovery of the CaMnO cluster in the oxygen-evolving centre of photosystem II. Strong Lewis acids such as Sc and BF, as well as strong Brønsted acids such as HSO and CFSOH, are commonly used to activate metal oxo species. In this work, we demonstrate that relatively weak Lewis acids such as Ca and other group 2 metal ions, as well as weak Brønsted acids such as CHCOH, can readily activate the stable RuO complex towards the oxidation of alkanes. Notably, the use of Ca and CHCOH together produces a remarkable cooperative effect on RuO , resulting in a much more efficient oxidant. DFT calculations show that Ca and CHCOH can bind to two oxo ligands to form a chelate ring. This results in substantial lowering of the barrier for hydrogen atom abstraction from cyclohexane.
金属氧代(M=O)配合物是化学和生物体系中常见的氧化剂。近年来,使用路易斯酸来活化金属氧代物种引起了极大的兴趣,特别是在光系统II的析氧中心发现CaMnO簇之后。常用强路易斯酸如Sc和BF,以及强布朗斯特酸如HSO和CFSOH来活化金属氧代物种。在这项工作中,我们证明了相对较弱的路易斯酸如Ca和其他第2族金属离子,以及较弱的布朗斯特酸如CHCOH,能够轻易地活化稳定的RuO配合物以实现烷烃的氧化。值得注意的是,将Ca和CHCOH一起使用对RuO产生了显著的协同效应,从而产生了一种效率更高的氧化剂。密度泛函理论计算表明,Ca和CHCOH可以与两个氧代配体结合形成一个螯合环。这导致从环己烷中提取氢原子的势垒大幅降低。