Unveiling co-acting effects of potassium and hydroxide ions on carbon dioxide reduction reaction selectivity
Lin Liu1, Dongxu Jiao1, Zhaoyong Jin1
1School of Materials Science and Engineering, Key Laboratory of Automobile Materials of MOE, Electron Microscopy Center, Jilin University, Changchun 130012, China.
Abstract:
The interfacial microenvironment plays a crucial role in influencing the absorption of important reaction intermediates and the resulting selectivity for carbon dioxide reduction reaction (CO2RR) (Xu et al., 2022) [1]. In this paper, the influence effects of potassium and hydroxide ions on CO2RR of Cu-based catalysts are comprehensively investigated using in-situ Raman spectroscopy and theoretical calculation. The results showed that potassium ions improved the binding strength of CO adsorbates (COad) intermediates on active sites, which is conducive to C-C coupling or further reaction. The presence of hydroxyl adsorbates (OHad) changes the charge distribution on the catalyst surface and reduces the energy barrier of C-C coupling. However, the excessive OHad adsorption can occupy a large number of active sites, leading to a decrease in COad coverage. We unveiled that the combined co-acting effect of potassium ions and hydroxide ions co-regulated the COad adsorption energy and COad coverage on Cu-based catalysts, leading to the modulation of the products selectivity. This work provides new insights for understanding the effect of interfacial microenvironment on the catalytic performance of CO2RR catalytic systems.
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