Department of Molecular Chemistry, Division of Applied Chemistry, Graduate School of Engineering, Osaka University, Osaka 565-0871, Japan.
Department of Material and Life Science, Division of Advanced Science and Biotechnology, Graduate School of Engineering, Osaka University, Osaka 565-0871, Japan.
Inorg Chem. 2021 Jun 7;60(11):7641-7649. doi: 10.1021/acs.inorgchem.0c03469. Epub 2021 Jan 5.
Hydroxylation of cyclohexane with -chloroperbenzoic acid was examined in the presence of an iron(III) complex supported by a trianionic planar tetradentate ligand. The present reaction system shows a high turnover number of 2750 with a high product selectivity of alcohol (93%). The turnover frequency was 0.51 s, and the second-order rate constant () for the C-H bond activation of cyclohexane was 1.08 M s, which is one of the highest values among the iron complexes in the oxidation of cyclohexane so far reported. The present catalytic system can be adapted to the hydroxylation of substrates having only primary C-H bonds such as 2,2,3,3-tetramethylbutane as well as gaseous alkanes such as butane, propane, and ethane. The involvement of an iron(III) acyl peroxido complex as the reactive species was suggested by spectroscopic measurements of the reaction solution.
在三阴离子平面四齿配体负载的铁(III)配合物的存在下,考察了环己烷与 - 氯过苯甲酸的羟基化反应。本反应体系具有 2750 的高转化数和 93%的高醇产物选择性。转化频率为 0.51 s,环己烷 C-H 键活化的二级速率常数 () 为 1.08 M s,这是迄今为止报道的铁配合物氧化环己烷中最高值之一。本催化体系可适用于仅具有仲 C-H 键的底物的羟基化,如 2,2,3,3-四甲基丁烷以及气态烷烃,如丁烷、丙烷和乙烷。反应溶液的光谱测量表明,铁(III)酰过氧配合物是反应的活性物种。