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Deep decarbonization of the power grid is only possible with mass-scale energy storage to overcome the spatiotemporal mismatch between supply from renewables and demand. Aqueous flow batteries fully decouple power and energy elements and can thus eas
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::5d52fab0d845f1b0a0b9a80360efb834
https://doi.org/10.26434/chemrxiv-2022-5ddhs
https://doi.org/10.26434/chemrxiv-2022-5ddhs
Publikováno v:
Chemistry – An Asian Journal. 17
High-concentration operation of redox flow batteries (RFBs) is essential for increasing their energy-storage capacity, but non-acidic electrolytes struggle to achieve the high concentrations of metal ions dissolved in acid, limiting the development o
Autor:
David Reber, Jonathan R. Thurston, Maximilian Becker, Gregory F. Pach, Marc E. Wagoner, Brian H. Robb, Scott E. Waters, Michael Marshak
Publikováno v:
ECS Meeting Abstracts. :1709-1709
Development of energy dense aqueous redox flow batteries is held back by high cost, chemical instability of highly soluble active compounds, or solubility limits of more suitable active materials. Here, we study solubilizing effects of inexpensive po
Autor:
Scott E. Waters, Jonathan R. Thurston, Robert W. Armstrong, Brian H. Robb, Michael Marshak, David Reber
Publikováno v:
ECS Meeting Abstracts. :1054-1054
Aqueous redox flow batteries are generally adapted from polymer electrolyte membrane fuel cells that use proton exchange membranes to balance the charge of the cell. Such membranes are well understood and exhibit excellent performance in acidic elect