High Voltage Redox-Meditated Flow Batteries with Prussian Blue Solid Booster
This work presents Prussian blue solid boosters for use in high voltage redox-mediated flow batteries (RMFB) based on non-aqueous electrolytes. The system consisted of sodium iodide as a redox mediator in an acetonitrile catholyte containing solid Prussian blue powder. The combination enabled the so...
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MDPI AG
2021
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oai:doaj.org-article:bca293a62ccf4c35ac4c69d531e61a5b2021-11-25T17:26:04ZHigh Voltage Redox-Meditated Flow Batteries with Prussian Blue Solid Booster10.3390/en142274981996-1073https://doaj.org/article/bca293a62ccf4c35ac4c69d531e61a5b2021-11-01T00:00:00Zhttps://www.mdpi.com/1996-1073/14/22/7498https://doaj.org/toc/1996-1073This work presents Prussian blue solid boosters for use in high voltage redox-mediated flow batteries (RMFB) based on non-aqueous electrolytes. The system consisted of sodium iodide as a redox mediator in an acetonitrile catholyte containing solid Prussian blue powder. The combination enabled the solid booster utilization in the proposed systems to reach as high as 66 mAh g<sup>−1</sup> for hydrated Prussian blue and 110 mAh g<sup>−1</sup> for anhydrous rhombohedral Prussian blue in cells with an average potential of about 3 V (vs. Na<sup>+</sup>/Na). Though the boosted system suffers from capacity fading, it opens up possibilities to develop non-aqueous RMFB with low-cost materials.John OstranderReza YounesiRonnie MogensenMDPI AGarticleflow batteryPrussian bluesolid boosterredox-mediatednon-aqueousTechnologyTENEnergies, Vol 14, Iss 7498, p 7498 (2021) |
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flow battery Prussian blue solid booster redox-mediated non-aqueous Technology T |
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flow battery Prussian blue solid booster redox-mediated non-aqueous Technology T John Ostrander Reza Younesi Ronnie Mogensen High Voltage Redox-Meditated Flow Batteries with Prussian Blue Solid Booster |
description |
This work presents Prussian blue solid boosters for use in high voltage redox-mediated flow batteries (RMFB) based on non-aqueous electrolytes. The system consisted of sodium iodide as a redox mediator in an acetonitrile catholyte containing solid Prussian blue powder. The combination enabled the solid booster utilization in the proposed systems to reach as high as 66 mAh g<sup>−1</sup> for hydrated Prussian blue and 110 mAh g<sup>−1</sup> for anhydrous rhombohedral Prussian blue in cells with an average potential of about 3 V (vs. Na<sup>+</sup>/Na). Though the boosted system suffers from capacity fading, it opens up possibilities to develop non-aqueous RMFB with low-cost materials. |
format |
article |
author |
John Ostrander Reza Younesi Ronnie Mogensen |
author_facet |
John Ostrander Reza Younesi Ronnie Mogensen |
author_sort |
John Ostrander |
title |
High Voltage Redox-Meditated Flow Batteries with Prussian Blue Solid Booster |
title_short |
High Voltage Redox-Meditated Flow Batteries with Prussian Blue Solid Booster |
title_full |
High Voltage Redox-Meditated Flow Batteries with Prussian Blue Solid Booster |
title_fullStr |
High Voltage Redox-Meditated Flow Batteries with Prussian Blue Solid Booster |
title_full_unstemmed |
High Voltage Redox-Meditated Flow Batteries with Prussian Blue Solid Booster |
title_sort |
high voltage redox-meditated flow batteries with prussian blue solid booster |
publisher |
MDPI AG |
publishDate |
2021 |
url |
https://doaj.org/article/bca293a62ccf4c35ac4c69d531e61a5b |
work_keys_str_mv |
AT johnostrander highvoltageredoxmeditatedflowbatterieswithprussianbluesolidbooster AT rezayounesi highvoltageredoxmeditatedflowbatterieswithprussianbluesolidbooster AT ronniemogensen highvoltageredoxmeditatedflowbatterieswithprussianbluesolidbooster |
_version_ |
1718412372098416640 |