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Toward High-Voltage, Energy-Dense, and Durable Aqueous Organic Redox Flow Batteries: Role of the Supporting Electrolytes

机译:朝向高压,能量密度和耐用的有机氧化还原电池:支持电解质的作用

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摘要

Sustainable energy supply from renewable sources requires highly efficient and economically competitive energy-storage technologies. With flexible design, high energy-storage efficiency, and long-term cyclability, redox flow batteries are superior candidates for peak shaving and load leveling for smart grids in the energy generation, storage and distribution networks. With natural abundance, structural diversity and tunability, redox-active organic species as valuable alternatives to the traditional inorganic-based materials are promising to tackle the resource and performance limitations. To design aqueous organic redox flow batteries toward energy-dense, high-rate performance and durability, in this Review, strategies to maximize the cell voltage, effective concentration of organic species, and operating current density are discussed. Besides the inherent nature of the organic molecules, suitable solvents and supporting ions can affect their solvation behavior and promote their chemical stability.
机译:可再生能源的可持续能源供应需要高效且经济上具有经济竞争性的能量储存技术。具有灵活的设计,高储能效率和长期可靠性,氧化还原电池是优越的候选候选者,用于能量发电,存储和分配网络中的智能电网的峰值剃须和负载调平。具有天然丰富,结构多样性和可调性,氧化还原活性有机物种作为传统无机材料的有价值的替代品,很有希望解决资源和性能限制。为了设计有机氧化还原电池,探讨了能量密集,高速性能和耐用性,讨论了最大化电池电压,有效浓度的策略,有机物质和工作电流密度的策略。除了有机分子的固有性,合适的溶剂和支撑离子可以影响其溶剂化行为并促进其化学稳定性。

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