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- W3171028672 startingPage "230087" @default.
- W3171028672 abstract "Rapid resource consumption and shifting public perspective on traditional electricity sources has forced the development of renewable energy sources, such as wind and solar energy. Redox flow batteries have become an important research area due to their independent power density and energy density, which is unique for electrochemical energy conversion and storage devices. These batteries are designed for grid-scale energy storage to be paired with wind and solar energy to create power grids that are not dependent on fossil fuels. The DOE has issued a 2023 target of 150 $/KWh and current all-vanadium chemistries approach these levels solely in vanadium costs. Therefore, other chemistries need to be developed that have long term stability, affordability, high performance, and utilize the high conductivity of water. Electrode doping facilitates charge transfer reactions at the electrode/electrolyte interface by improving the wettability and activity of the electrode to permit higher power and energy systems. These developments and inventive chemistries provide opportunities to employ cheaper chemistries to help meet the future demand for renewable energy. The recent developments in aqueous redox flow batteries utilizing chemistries other than vanadium are discussed in this review." @default.
- W3171028672 created "2021-06-22" @default.
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- W3171028672 date "2021-09-01" @default.
- W3171028672 modified "2023-10-18" @default.
- W3171028672 title "Recent developments in alternative aqueous redox flow batteries for grid-scale energy storage" @default.
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- W3171028672 doi "https://doi.org/10.1016/j.jpowsour.2021.230087" @default.
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