D’Adamo, M.; Badenhorst, W.; Murtomäki, L.; Cordoba, P.; Derbeli, M.; Saez-Zamora, J.A.; Trilla, L.
Modeling an All-Copper Redox Flow Battery for Microgrid Applications: Impact of Current and Flow Rate on Capacity Fading and Deposition. Energies 2025, 18, 2084.
https://doi.org/10.3390/en18082084
AMA Style
D’Adamo M, Badenhorst W, Murtomäki L, Cordoba P, Derbeli M, Saez-Zamora JA, Trilla L.
Modeling an All-Copper Redox Flow Battery for Microgrid Applications: Impact of Current and Flow Rate on Capacity Fading and Deposition. Energies. 2025; 18(8):2084.
https://doi.org/10.3390/en18082084
Chicago/Turabian Style
D’Adamo, Mirko, Wouter Badenhorst, Lasse Murtomäki, Paula Cordoba, Mohamed Derbeli, Jose A. Saez-Zamora, and LluÃs Trilla.
2025. "Modeling an All-Copper Redox Flow Battery for Microgrid Applications: Impact of Current and Flow Rate on Capacity Fading and Deposition" Energies 18, no. 8: 2084.
https://doi.org/10.3390/en18082084
APA Style
D’Adamo, M., Badenhorst, W., Murtomäki, L., Cordoba, P., Derbeli, M., Saez-Zamora, J. A., & Trilla, L.
(2025). Modeling an All-Copper Redox Flow Battery for Microgrid Applications: Impact of Current and Flow Rate on Capacity Fading and Deposition. Energies, 18(8), 2084.
https://doi.org/10.3390/en18082084