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September 5, 2025ACS Applied Materials & Interfaces8 citationsOpen Access

Cations Responsible for Varied CO2RR Product Selectivity at High Overpotentials over Cu2O Nanocubes

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STSaeede TafazoliAŞAzra ŞekercioğluHZHamaneh Zarenezhad

Key Points

  • Cations significantly influence CO2RR product selectivity, altering Cu2O's surface chemistry.
  • Lithium promotes metallic Cu formation, boosting methane (CH4) production, while potassium and cesium enhance C2H4 yields.
  • Employing techniques like X-ray absorption spectroscopy and electrochemical surface-enhanced Raman spectroscopy reveals cation-induced structural changes.
  • The findings suggest optimized cation selection in electrolytes could improve catalysis for sustainable energy solutions.

Abstract

This study investigates the role of cations in tuning the structure and chemical state of Cu2O nanocubes during CO2 reduction reactions (CO2RR) and how these changes impact product selectivity. Different cations (Li+, K+, Cs+) in carbonate (CO32−) electrolytes have a significant effect on the dissolution and reprecipitation of Cu species, which alters the surface chemistry of electrodes. Li+ promotes the dissolution of Cu, leading to a metallic surface that favors CH4 production, while K+ and Cs+ stabilize the Cu oxide and hydroxide species on the surface, resulting in higher faradaic efficiency for C2H4. A combination of ex situ and in situ techniques, including X-ray absorption spectroscopy (XAS), X-ray photoelectron spectroscopy (XPS), and electrochemical surface-enhanced Raman spectroscopy (EC-SERS), demonstrates cation-induced changes in the Cu oxidation state and surface structure directly affecting CO2RR product selectivity.

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Cite This Study

Tafazoli et al. (2025) studied this question.

synapsesocial.com/papers/68bb4dfb6d6d5674bcd02350https://doi.org/10.1021/acsami.5c09803
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Also Consider

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  4. 4Dual‐Anion‐Stabilized Cuδ+ Sites in Cu2(OH)2CO3 for High C2+ Selectivity in the CO2 Electroreduction Reaction2024 · 9 citations
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