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机构地区:[1]Department of Chemistry,University of New Brunswick,Fredericton,NB E3B 5A3,Canada
出 处:《Journal of Energy Chemistry》2025年第1期125-143,共19页能源化学(英文版)
基 金:Natural Sciences and Engineering Research Council(NSERC)of Canada(RGPIN-2022-03488);New Brunswick Innovation Foundation(NBIF)。
摘 要:As environmental concerns from fossil fuel consumption intensify,large-scale energy storage becomes imperative for the integration of renewable sources like wind,hydro,and solar with the electrical grid.Redox flow batteries,particularly those employing organic molecules,are positioned as a key technology for this purpose.This review explores the growing field of symmetric organic redox flow batteries(ORFBs)within this context.Unlike traditional asymmetric designs based on unique active materials for each electrode,symmetric ORFBs involve a single bipolar species for both electrodes.This review highlights the benefits of a symmetric design,and categorizes five distinct classes of organic bipolar molecules used in both aqueous and non-aqueous solvents.By providing a comprehensive overview of their cell cycling and performance characteristics,the strengths and weaknesses of the diverse categories of bipolar molecules are highlighted for both solvent systems,as are opportunities for future development.This should guide new research directions and advance the development of practical symmetric ORFBs.
关 键 词:Redox flow battery Symmetric battery Organic battery Aqueous electrolyte Non-aqueousel ectrolyte
分 类 号:TM912[电气工程—电力电子与电力传动]
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