Long-Term Stability of Ferri-/Ferrocyanide as an Electroactive Component for Redox Flow Battery Applications: On the Origin of Apparent Capacity Fade
Published in Journal of The Electrochemical Society, 2023
BibTeX citation
@article{2023_Fell_JES,
author = "Fell, Eric M. and De Porcellinis, Diana and Jing, Yan and Gutierrez-Venegas, Valeria and George, Thomas Y. and Gordon, Roy G. and Granados-Focil, Sergio and Aziz, Michael J.",
journal = "Journal of The Electrochemical Society",
title = "Long-{Term} {Stability} of {Ferri}-/{Ferrocyanide} as an {Electroactive} {Component} for {Redox} {Flow} {Battery} {Applications}: {On} the {Origin} of {Apparent} {Capacity} {Fade}",
year = "2023",
month = "July",
number = "7",
pages = "070525",
volume = "170",
doi = "10.1149/1945-7111/ace936",
url = "https://dx.doi.org/10.1149/1945-7111/ace936",
date = "2023-07",
}
Eric M. Fell, Diana De Porcellinis, Yan Jing, Valeria Gutierrez-Venegas, Thomas Y. George, Roy G. Gordon, Sergio Granados-Focil, Michael J. Aziz, "Long-Term Stability of Ferri-/Ferrocyanide as an Electroactive Component for Redox Flow Battery Applications: On the Origin of Apparent Capacity Fade." Journal of The Electrochemical Society, 170, 070525, (2023).
Download Paper
