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February 7, 2026Nature Communications0 citationsOpen Access

Ampere-level CO2 electroreduction to multi-carbon oxygenates in acidic electrolyte through surface microenvironment reconstruction

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YYYaoyu YinZLZhongnan LingSLShiqiang Liu

Key Points

  • This research aims to enhance CO2 electroreduction efficiency in acidic electrolytes using modified electrodes.
  • Preparation of ionic liquid-modified Cu electrode (IL@Cu)
  • Testing at a current density of 2.0 A cm−2 in 0.5 M K2SO4 with pH adjusted to 1
  • Measurement of Faradaic efficiency and carbon efficiency for C2+ products
  • Achieved a Faradaic efficiency of 82.7% for C2+ products
  • Single-pass carbon efficiency reached 78.5%
  • Partial current density for C2+ oxygenates and ethanol exceeded 1.2 A cm−2 and 1.0 A cm−2, respectively

Abstract

Efficient CO 2 electroreduction to multi-carbon (C 2+ ) oxygenates in acidic electrolytes remains a great challenge, especially under high current density conditions. In this study, we prepare an ionic liquid (IL)-modified Cu electrode (IL@Cu), which achieve a Faradaic efficiency (FE) of 82.7% toward C 2+ products at a current density of 2.0 A cm −2 in 0.5 M K 2 SO 4 (pH = 1, adjusted with H 2 SO 4 ), with a single-pass carbon efficiency reaching 78.5%. Under the same conditions, the partial current density for C 2+ oxygenates and ethanol exceed 1.2 A cm −2 and 1.0 A cm −2 , respectively, over IL@Cu. Mechanism study has shown that K + cations are repelled by the IL cations during the reaction, allowing water molecules to access the electrode surface. The displacement of K + enhances C–C coupling, while the proximity of water to the electrode surface facilitates the incorporation of oxygen-containing intermediates into the hydrogen bond network, thereby promoting the formation of C 2+ oxygenates.

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Cite This Study

Yin et al. (2026) studied this question.

synapsesocial.com/papers/698692e89d267392364c996ehttps://doi.org/10.1038/s41467-026-68739-z
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