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Mass Transfer and Reaction Kinetic Enhanced Electrode for High-Performance Aqueous Flow Batteries

机译:高性能水流电池的传质和反应动力学增强电极

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A scalable and efficient process to modify electrodes with enhanced mass transfer and reaction kinetics is critical for redox flow batteries (RFBs). For the first time, this work introduces electrochemical exfoliation as a surface modification method of graphite felt (GF) to enhance the mass transfer and reaction kinetics in RFBs. Anion intercalation and subsequent gas evolutions at room temperature for one minute expand the graphite layers that increase the electrode surface area. Meanwhile, sufficient oxygen functional groups are introduced to the electrode, resulting in enhanced reaction kinetics and improved hydrophilicity. Further, spin-polarized density functional theory is employed to reveal the role of oxygen functional groups in accelerating the vanadium redox reaction. Benefitting from sufficient oxygen groups, larger surface area, and superior wettability, the as-prepared exfoliated GF (E-GF) shows exceptional electrocatalytic activity with minimized overpotential, higher volumetric capacity, and improved energy efficiency. The redox flow battery assembled with the E-GF electrode delivers voltage and energy efficiencies of 89.72% and 86.41% at the current density of 100 mA cm(-2), respectively. Remarkably, compared to the traditional GF treatment method, the elimination of the high temperature and long-time treatment processes make this approach much more energy and time efficient, scalable, and affordable for large-scale manufacturing.
机译:对于氧化还原液流电池(RFB)而言,采用可扩展的高效方法来修饰电极,以增强传质和反应动力学是至关重要的。这项工作首次将电化学剥离作为石墨毡(GF)的表面改性方法,以增强RFB中的传质和反应动力学。在室温下进行一分钟的阴离子嵌入和随后的气体逸出会使石墨层膨胀,从而增加电极表面积。同时,将足够的氧官能团引入电极,导致增强的反应动力学和改善的亲水性。此外,自旋极化密度泛函理论被用来揭示氧官能团在促进钒氧化还原反应中的作用。得益于足够的氧原子团,更大的表面积和优异的润湿性,如此制备的片状脱落酸GF(E-GF)显示出优异的电催化活性,同时具有最小的过电位,更高的容量和更高的能源效率。组装有E-GF电极的氧化还原液流电池在100 mA cm(-2)的电流密度下的电压和能量效率分别为89.72%和86.41%。值得注意的是,与传统的GF处理方法相比,省去了高温和长时间的处理过程,使得该方法在能源和时间效率上更具可扩展性,并且可大规模生产。

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