Bio-Inspired Flow Field Design for Enhanced Mass Transport in CO<sub>2</sub> Electrolyzers: A Multiphysics Modeling Approach.
- DOI
- 10.1021/acsomega.5c13375
- Published
- 2026-04-02
- Container
- ACS Omega
- Publisher
- Not recorded
- Open access
- yes
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Cite this work
BibTeX
@article{allodium:10.1021/acsomega.5c13375,
title = {Bio-Inspired Flow Field Design for Enhanced Mass Transport in CO\<sub\>2\</sub\> Electrolyzers: A Multiphysics Modeling Approach.},
author = {Trivedi V and Vishal V and Dutta A and Bhattacharya S.},
year = {2026},
journal = {ACS Omega},
doi = {10.1021/acsomega.5c13375},
url = {https://doi.org/10.1021/acsomega.5c13375}
}RIS
TY - JOUR TI - Bio-Inspired Flow Field Design for Enhanced Mass Transport in CO<sub>2</sub> Electrolyzers: A Multiphysics Modeling Approach. AU - Trivedi V AU - Vishal V AU - Dutta A AU - Bhattacharya S. PY - 2026 JO - ACS Omega DO - 10.1021/acsomega.5c13375 UR - https://doi.org/10.1021/acsomega.5c13375 ER -
APA
V, T., V, V., A, D., & S., B. (2026). Bio-Inspired Flow Field Design for Enhanced Mass Transport in CO<sub>2</sub> Electrolyzers: A Multiphysics Modeling Approach.. ACS Omega. https://doi.org/10.1021/acsomega.5c13375
Source records
- europe-pmc · retrieved 2026-09-26T18:20:03.236Z
- doaj · retrieved 2026-09-26T18:20:03.242Z