电化学
选择性
法拉第效率
催化作用
固碳
阴极
氨基酸
金属
化学
材料科学
无机化学
组合化学
有机化学
电极
二氧化碳
物理化学
生物化学
作者
Anastasia Dmitrieva,Jury J. Medvedev,Xenia Medvedeva,Elena F. Krivoshapkina,Anna Klinkova
标识
DOI:10.1149/1945-7111/ace0dc
摘要
The electrochemical fixation of CO 2 by imines has recently attracted an increased interest as sustainable strategy for the synthesis of α -amino acids and a green alternative to the traditional Strecker synthesis, which relies on highly toxic precursors. Despite the industrial prospects of the electrochemical approach, the catalyst material effects on the selectivity of the process are still purely understood, hindering rational catalyst design. Herein, we study the electrochemical fixation of CO 2 by N -benzylideneaniline using a wide variety of cathode materials, including 10 polycrystalline metals (Ti, Zn, Au, Pd, Pt, Sn, Ag, Ni, Fe, Cu), glassy carbon, and Pd nanoparticles of different shapes. We found that among all studied bulk metals, Ti and Zn show the best results with above 93% faradaic efficiency of α -amino acid, while other materials show from good to low selectivity (12% for Sn). We also demonstrate that especially high current densities and nearly quantitative faradaic efficiency and selectivity of α -amino acids can be achieved by employing Pd nanoparticles.
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