(Keynote) Electrochemical CO2 Reduction on NiNC Single Metal Atom Catalysts Under Alkaline to Acidic pH Conditions

Peter Strasser
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Abstract

The science and technology of the direct electrochemical CO 2 reduction reaction on both model electrodes in liquid-electrolyte H-cells and Gas Diffusion Electrodes (GDEs) in flow electrolyzers offer as many formidable challenges as intriguing opportunities. Controlling the selectivity (faradaic efficiency), while maximizing the energy efficiency by lowering the kinetic overpotentials remains key to turn this complex reaction into a practical process embedded in a process chain. In this talk, I will highlight some of our recent advances in the design and characterization of NiNC single site electrocatalysts for the electrochemical reduction of CO 2 to CO and CO 2 /CO mixed feeds into value-added fuels and chemicals in H-cell and Gas Diffusion Electrode (GDE) single cell electrolyzers. Further focus will be placed on the diagnosis of carbonate transport processes during electrolyzer cell operation using the experimentally accessible carbon crossover coefficient, CCC. Performance and its limitations of cell operation in alkaline and acid conditions will be contrasted and discussed.
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(主题演讲)碱性到酸性条件下,NiNC单金属原子催化剂的电化学CO2还原
在液-电解质h电池模型电极和流动电解槽气体扩散电极(GDEs)上进行直接电化学CO 2还原反应的科学技术提供了许多艰巨的挑战和有趣的机会。控制选择性(法拉第效率),同时通过降低动力学过电位来最大化能量效率,仍然是将复杂反应转化为嵌入过程链中的实际过程的关键。在这次演讲中,我将重点介绍我们在设计和表征NiNC单位点电催化剂方面的一些最新进展,这些电催化剂用于在氢电池和气体扩散电极(GDE)单电池电解槽中将CO 2电化学还原为CO和CO 2 /CO混合饲料转化为增值燃料和化学品。进一步的重点将放在使用实验可获得的碳交叉系数CCC来诊断电解槽运行过程中的碳酸盐运输过程。将对碱性和酸性条件下电池运行的性能及其局限性进行对比和讨论。
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