Electrocatalytic Enhancement of CO Methanation at the Metal–Electrolyte Interface Studied Using In Situ X-ray Photoelectron Spectroscopy

C Pub Date : 2023-11-08 DOI:10.3390/c9040106
Christoph W. Thurner, Leander Haug, Daniel Winkler, Christoph Griesser, Matthias Leitner, Toni Moser, Daniel Werner, Marco Thaler, Lucas A. Scheibel, Thomas Götsch, Emilia Carbonio, Julia Kunze-Liebhäuser, Engelbert Portenkirchner, Simon Penner, Bernhard Klötzer
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Abstract

For the direct reduction of CO2 and H2O in solid oxide electrolysis cells (SOECs) with cermet electrodes toward methane, a fundamental understanding of the role of elemental carbon as a key intermediate within the reaction pathway is of eminent interest. The present synchrotron-based in situ near-ambient-pressure X-ray photoelectron spectroscopy (NAP-XPS) study shows that alloying of Ni/yttria-stabilized-zirconia (YSZ) cermet electrodes with Cu can be used to control the electrochemical accumulation of interfacial carbon and to optimize its reactivity toward CO2. In the presence of syngas, sufficiently high cathodic potentials induce excess methane on the studied Ni/yttria-stabilized-zirconia (YSZ)-, NiCu/YSZ- and Pt/gadolinium-doped-ceria (GDC) cermet systems. The hydrogenation of carbon, resulting from CO activation at the triple-phase boundary of Pt/GDC, is most efficient.
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用原位x射线光电子能谱研究金属-电解质界面上CO甲烷化的电催化增强
对于使用金属陶瓷电极的固体氧化物电解电池(soec)将CO2和H2O直接还原为甲烷,对单质碳在反应途径中作为关键中间体的作用的基本理解是非常重要的。基于同步加速器的原位近大气压x射线光电子能谱(napp - xps)研究表明,镍/钇稳定氧化锆(YSZ)金属陶瓷电极与Cu的合金化可以控制界面碳的电化学积累,并优化其对CO2的反应性。在合成气存在的情况下,足够高的阴极电位诱导所研究的Ni/ ytri_ -稳定氧化锆(YSZ)-、NiCu/YSZ-和Pt/钆掺杂氧化铈(GDC)陶瓷体系产生过量的甲烷。在Pt/GDC三相边界处CO活化的碳的加氢是最有效的。
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