journal article Feb 18, 2026

Pore-Scale Transport Effects in Electrochemical CO 2 Reduction on Gold via Coupled Microkinetic-Transport Modeling

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References
26
[5]
Modeling gas-diffusion electrodes for CO2 reduction

Lien-Chun Weng, Alexis T. Bell, Adam Z. Weber

Physical Chemistry Chemical Physics 10.1039/c8cp01319e
[12]
Modeling the electrical double layer to understand the reaction environment in a CO 2 electrocatalytic system

Divya Bohra, Jehanzeb H. Chaudhry, Thomas Burdyny et al.

Energy Environ. Sci. 10.1039/c9ee02485a
[14]
From the Sabatier principle to a predictive theory of transition-metal heterogeneous catalysis

Andrew J. Medford, Aleksandra Vojvodic, Jens S. Hummelshøj et al.

Journal of Catalysis 10.1016/j.jcat.2014.12.033
[16]
Roy, T.; Govindarajan, N.; Lin, T. Y.; Varley, J. B. LLNL/firecat: FireCat ; Zenodo, 2023.
[18]
Ham D. A. (2023)
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Details
Published
Feb 18, 2026
Vol/Issue
2(3)
Pages
668-677
License
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Funding
Stanford University Award: TC02307
Total Award: TC02307
Cite This Article
Florian Euzenat, José Guillermo Rivera de la Cruz, Mohamed Regaieg, et al. (2026). Pore-Scale Transport Effects in Electrochemical CO 2 Reduction on Gold via Coupled Microkinetic-Transport Modeling. ACS Electrochemistry, 2(3), 668-677. https://doi.org/10.1021/acselectrochem.5c00470