Askari Mohammad S, Esguerra Kenneth Virgel N, Lumb Jean-Philip, Ottenwaelder Xavier
Department of Chemistry and Biochemistry, Concordia University , Montreal, QC H4B 1R6, Canada.
Department of Chemistry, McGill University , Montreal, QC H3A 0B8, Canada.
Inorg Chem. 2015 Sep 8;54(17):8665-72. doi: 10.1021/acs.inorgchem.5b01297. Epub 2015 Aug 24.
Controlling product selectivity during the catalytic aerobic oxidation of phenols remains a significant challenge that hinders reaction development. This work provides a mechanistic picture of a Cu-catalyzed, aerobic functionalization of phenols that is selective for phenoxy-coupled ortho-quinones. We show that the immediate product of the reaction is a Cu(II)-semiquinone radical complex and reveal that ortho-oxygenation precedes oxidative coupling. This complex is the resting state of the Cu catalyst during turnover at room temperature. A mechanistic study of the formation of this complex at low temperatures demonstrates that the oxygenation pathway mimics the dinuclear Cu enzyme tyrosinase by involving a dinuclear side-on peroxodicopper(II) oxidant. Unlike the enzyme, however, the rate-limiting step of the ortho-oxygenation reaction is the self-assembly of the oxidant from Cu(I) and O2. We provide details for all steps in the cycle and demonstrate that turnover is contingent upon proton-transfer events that are mediated by a slight excess of ligand. Finally, our knowledge of the reaction mechanism can be leveraged to diversify the reaction outcome. Thus, uncoupled ortho-quinones are favored in polar, coordinating media, highlighting unusually high levels of chemoselectivity for a catalytic aerobic oxidation of a phenol.
在酚类的催化需氧氧化过程中控制产物选择性仍然是阻碍反应发展的一项重大挑战。这项工作提供了一种铜催化的酚类需氧官能化反应的机理图景,该反应对苯氧基偶联的邻醌具有选择性。我们表明,反应的直接产物是一种铜(II)-半醌自由基络合物,并揭示邻位氧化先于氧化偶联。这种络合物是室温下铜催化剂在周转过程中的静止状态。对该络合物在低温下形成的机理研究表明,氧化途径通过涉及一种双核侧基过氧二铜(II)氧化剂来模拟双核铜酶酪氨酸酶。然而,与该酶不同的是,邻位氧化反应的限速步骤是氧化剂由铜(I)和氧气的自组装。我们提供了循环中所有步骤的详细信息,并证明周转取决于由略微过量的配体介导的质子转移事件。最后,我们对反应机理的认识可用于使反应结果多样化。因此,在极性配位介质中,未偶联的邻醌更受青睐,这突出了酚类催化需氧氧化过程中异常高的化学选择性水平。