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Nanoporous aramid nanofibre separators for nonaqueous redox flow batteries

机译:用于非水氧化还原液流电池的纳米多孔芳纶纳米纤维隔板

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Redox flow batteries are attractive for large-scale energy storage due to a combination of high theoretical efficiencies and decoupled power and energy storage capacities. Efforts to significantly increase energy densities by using nonaqueous electrolytes have been impeded by separators with low selectivities. Here, we report nanoporous separators based on aramid nanofibres, which are assembled using a scalable, low cost, spin-assisted layer-by-layer technique. The multilayer structure yields 5?±?0.5?nm pores, enabling nanofiltration with high selectivity. Further, surface modifications using polyelectrolytes result in enhanced performance. In vanadium acetylacetonate/acetonitrile-based electrolytes, the coated separator exhibits permeabilities an order of magnitude lower and ionic conductivities five times higher than those of a commercial separator. In addition, the coated separators exhibit exceptional stability, showing minimal degradation after more than 100?h of cycling. The low permeability translates into high coulombic efficiency in flow cell charge/discharge experiments performed at cycle times relevant for large-scale applications (5?h).
机译:氧化还原液流电池具有较高的理论效率以及去耦的功率和储能能力,因此对于大规模储能具有吸引力。具有低选择性的隔板阻碍了通过使用非水电解质来显着提高能量密度的努力。在这里,我们报道了基于芳族聚酰胺纳米纤维的纳米多孔隔板,它是使用可扩展的,低成本的,旋转辅助的逐层技术组装而成的。该多层结构产生5≤±0.5μnm的孔,从而能够以高选择性进行纳米过滤。此外,使用聚电解质的表面改性导致增强的性能。在基于乙酰丙酮钒/乙腈的电解质中,涂覆的隔膜显示出的渗透率比市售隔膜低约一个数量级,而离子电导率则高出五倍。此外,涂覆的隔膜表现出出色的稳定性,在超过100小时的循环后,其降解几乎没有。在与大规模应用相关的循环时间(5?h)下进行的流通池充/放电实验中,低渗透率转化为高库仑效率。

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