格式化
化学
钴
氢化物
磷化氢
无机化学
胺气处理
配体(生物化学)
齿合度
脱质子化
光化学
高分子化学
药物化学
有机化学
金属
催化作用
生物化学
受体
离子
作者
Sriram Katipamula,Andrew W. Cook,Isabella Niedzwiecki,Thomas J. Emge,Kate M. Waldie
标识
DOI:10.26434/chemrxiv-2023-tfn6t
摘要
We report a family of cobalt complexes based on bidentate phosphine ligands with two, one, or zero pendent amine groups in the ligand backbone. The pendent amine complexes are active electrocatalysts for the formate oxidation reaction, generating CO2 with near-quantitative faradaic efficiency at moderate overpotentials (0.45 – 0.57 V in acetonitrile). These homogeneous electrocatalysts are the first cobalt example and second first-row transition metal example for formate oxidation. Thermodynamic measurements reveal these complexes are energetically primed for formate oxidation via hydride transfer to the cobalt center, followed by deprotonation of the resulting cobalt-hydride by formate acting as a base. The complex with the strongest cobalt- hydride bond, given by its thermodynamic hydricity, is the fastest electrocatalyst in this series, with an observed rate constant for formate oxidation of 135 ± 8 h−1 at 25 °C. Electrocatalytic turnover is not observed for the complex with no pendent amine groups: decomposition of the complex structure is evident in the presence of high formate concentrations.
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