Identifying Intermediates in Electrocatalytic Water Oxidation with a Manganese Corrole Complex

化学 咔咯 氢氧化物 反应性(心理学) 亲核细胞 电化学 本体电解 反应速率常数 电解水 催化作用 无机化学 光化学 药物化学 电解 动力学 有机化学 物理化学 循环伏安法 电极 电解质 病理 物理 替代医学 医学 量子力学
作者
Xialiang Li,Xuepeng Zhang,Mian Guo,Bin Lv,Kai Guo,Xiaotong Jin,Wei Zhang,Yong‐Min Lee,Shunichi Fukuzumi,Wonwoo Nam,Rui Cao
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:143 (36): 14613-14621 被引量:96
标识
DOI:10.1021/jacs.1c05204
摘要

Water nucleophilic attack (WNA) on high-valent terminal Mn-oxo species is proposed for O–O bond formation in natural and artificial water oxidation. Herein, we report an electrocatalytic water oxidation reaction with MnIII tris(pentafluorophenyl)corrole (1) in propylene carbonate (PC). O2 was generated at the MnV/IV potential with hydroxide, but a more anodic potential was required to evolve O2 with only water. With a synthetic MnV(O) complex of 1, a second-order rate constant, k2(OH–), of 7.4 × 103 M–1 s–1 was determined in the reaction of the MnV(O) complex of 1 with hydroxide, whereas its reaction with water occurred much more slowly with a k2(H2O) value of 4.4 × 10–3 M–1 s–1. This large reactivity difference of MnV(O) with hydroxide and water is consistent with different electrocatalytic behaviors of 1 with these two substrates. Significantly, during the electrolysis of 1 with water, a MnIV-peroxo species was identified with various spectroscopic methods, including UV–vis, electron paramagnetic resonance, and infrared spectroscopy. Isotope-labeling experiments confirmed that both O atoms of this peroxo species are derived from water, suggesting the involvement of the WNA mechanism in water oxidation by a Mn complex. Density functional theory calculations suggested that the nucleophilic attack of hydroxide on MnV(O) and also WNA to 1e–-oxidized MnV(O) are feasibly involved in the catalytic cycles but that direct WNA to MnV(O) is not likely to be the main O–O bond formation pathway in the electrocatalytic water oxidation by 1.
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