High Energy Density Aqueous Flow Battery Utilizing Extremely Stable, Branching-Induced High-Solubility Anthraquinone near Neutral pH
Published in ACS Energy Letters, 2023
BibTeX citation
@article{2023_Kerr_ACSENERGLETT,
author = "Kerr, Emily F. and Tang, Zhijiang and George, Thomas Y. and Jin, Shijian and Fell, Eric M. and Amini, Kiana and Jing, Yan and Wu, Min and Gordon, Roy G. and Aziz, Michael J.",
journal = "ACS Energy Letters",
title = "High {Energy} {Density} {Aqueous} {Flow} {Battery} {Utilizing} {Extremely} {Stable}, {Branching}-{Induced} {High}-{Solubility} {Anthraquinone} near {Neutral} {pH}",
year = "2023",
month = "January",
number = "1",
pages = "600--607",
volume = "8",
doi = "10.1021/acsenergylett.2c01691",
url = "https://doi.org/10.1021/acsenergylett.2c01691",
date = "2023-01",
}
Emily F. Kerr, Zhijiang Tang, Thomas Y. George, Shijian Jin, Eric M. Fell, Kiana Amini, Yan Jing, Min Wu, Roy G. Gordon, Michael J. Aziz, "High Energy Density Aqueous Flow Battery Utilizing Extremely Stable, Branching-Induced High-Solubility Anthraquinone near Neutral pH." ACS Energy Letters, 8, 600–607, (2023).
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