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Chelated Chromium Electrolyte Enabling High-Voltage Aqueous Flow Batteries

机译:螯合的铬电解质,可用于高压水流电池

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摘要

Widespread adoption of renewable energy is limited by the lack of low-cost long-duration energy storage. Redox flow batteries are an attractive option to provide this type of storage because their power and energy components can be scaled independently; however, systems commercialized to date have failed to realize this low-cost potential, primarily because of the cost and performance of the battery chemistry. Here, we resolve these challenges with a negative electrolyte comprised of earth-abundant chromium and an inexpensive chelating agent which operates at a more reducing potential than zinc while inhibiting hydrogen production. Utilizing this electrolyte, we report two of the highest voltage aqueous flow batteries, which have stably operated at room temperature and near neutral pH with high efficiency and high power density. These results demonstrate the ability of chelated metal complexes to prevent water coordination and establish a general method for inhibiting water splitting reactions at highly negative potentials.
机译:可再生能源的广泛采用受到缺乏低成本长期持续性储能的限制。氧化还原液流电池是提供此类存储的一种有吸引力的选择,因为它们的功率和能量分量可以独立缩放。然而,迄今为止,商业化的系统未能实现这种低成本潜力,主要是因为电池化学成分的成本和性能。在这里,我们用一种由富含地球的铬和一种廉价的螯合剂组成的负极电解液解决了这些挑战,这种负极电解液在抑制氢产生的同时比锌具有更大的还原电位。利用这种电解质,我们报告了两个电压最高的水流电池,它们在室温和接近中性pH的条件下稳定运行,效率高且功率密度高。这些结果证明了螯合金属络合物防止水配位并建立了在高负电势下抑制水分解反应的通用方法的能力。

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  • 来源
    《Joule》 |2019年第10期|2503-2512|共10页
  • 作者单位

    Department of Chemical and Biological Engineering University of Colorado Boulder Boulder CO 80309 USA;

    Department of Chemistry University of Colorado Boulder Boulder CO 80309 USA Renewable and Sustainable Energy Institute University of Colorado Boulder Boulder CO 80309 USA Lead Contact;

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  • 正文语种 eng
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