Department of Chemistry, Biochemistry and Pharmaceutical Sciences, University of Bern, Freiestrasse 3, CH-3012 Bern, Switzerland.
Dalton Trans. 2023 Jun 13;52(23):7992-8002. doi: 10.1039/d3dt01013a.
The chemistry of N-heterocyclic carbenes with Earth-abundant manganese has largely focused on low-valent systems for reductive catalysis. Here, we have decorated imidazole- and triazole-derived carbenes with phenol substituents to access higher-valent Mn(III) complexes [Mn(,,)(acac)], where acac = acetylacetonato, and ,, = bis(phenolate)imidazolylidene (1) or bis(phenolate)triazolylidene (2). Both complexes catalyze the oxidation of alcohols in the presence of BuOOH as terminal oxidant. Complex 2 is slightly more active than 1 (TOF up to 540 h 500 h), yet significantly more robust towards deactivation. Secondary and primary alcohols are oxidized, the latter with high selectivity and essentially no overoxidation of the aldehyde product to carboxylic acids unless the reaction time is substantially extended. Mechanistic investigations using Hammett parameters, IR spectroscopy, isotope labelling experiments, and specific substrates and oxidants as probes support the formation of a manganese(V) oxo system as the active species and subsequent turnover-limiting hydrogen atom abstraction.
氮杂环卡宾与丰富的锰的化学反应主要集中在还原催化的低价体系上。在这里,我们用苯酚取代基修饰咪唑和三唑衍生的卡宾,得到了更高价的 Mn(III) 配合物 [Mn(,,)(acac)],其中 acac = 乙酰丙酮酸盐, , , = 双(酚基)咪唑基(1)或双(酚基)三唑基(2)。这两种配合物都能在 BuOOH 作为末端氧化剂的存在下催化醇的氧化。配合物 2 比 1 略为活跃(TOF 高达 540 h-1 至 500 h-1),但对失活的稳定性要强得多。仲醇和伯醇都能被氧化,伯醇具有很高的选择性,并且基本上没有将醛产物过度氧化为羧酸,除非反应时间大大延长。使用哈米特参数、红外光谱、同位素标记实验以及特定的底物和氧化剂作为探针进行的机理研究表明,形成锰(V)氧代体系是活性物种,随后是周转限制的氢原子攫取。