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Inhibition of Lithium Dendrite Formation in Lithium Metal Batteries via Regulated Cation Transport through Ultrathin Sub-Nanometer Porous Carbon Nanomembranes

机译:通过超薄亚纳米多孔碳纳米爆炸抑制锂金属电池锂二德形成锂的抑制作用

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Suppressing Li dendrite growth has gained research interest due to the high theoretical capacity of Li metal anodes. Traditional Celgard membranes which are currently used in Li metal batteries fall short in achieving uniform Li flux at the electrode/electrolyte interface due to their inherent irregular pore sizes. Here, the use of an ultrathin (approximate to 1.2 nm) carbon nanomembrane (CNM) which contains sub-nanometer sized pores as an interlayer to regulate the mass transport of Li-ions is demonstrated. Symmetrical cell analysis reveals that the cell with CNM interlayer cycles over 2x longer than the control experiment without the formation of Li dendrites. Further investigation on the Li plating morphology on Cu foil reveals highly dense deposits of Li metal using a standard carbonate electrolyte. A smoothed-particle hydrodynamics simulation of the mass transport at the anode-electrolyte interface elucidates the effect of the CNM in promoting the formation of highly dense Li deposits and inhibiting the formation of dendrites. A lithium metal battery fabricated using the LiFePO4 cathode exhibits a stable, flat voltage profile with low polarization for over 300 cycles indicating the effect of regulated mass transport.
机译:由于Li金属阳极的高理论能力,抑制Li Dendrite的生长已经获得了研究兴趣。目前用于锂金属电池的传统Celgard膜在电极/电解质界面实现均匀的Li通量由于其固有的不规则孔径而缺乏。这里,使用超薄(近似为1.2nm)碳纳米膜(CNM),其含有亚纳米尺寸的孔作为中间层以调节Li-离子的质量传递。对称细胞分析表明,具有CNM中间层间循环的细胞比对照实验更长2次,而不形成Li Dendrites的形成。进一步研究Cu箔的锂电镀形态揭示了使用标准碳酸盐电解质的Li金属的高致密沉积物。阳极电解质界面的质量传输的平滑粒子流体动力学模拟阐明了CNM在促进高度致密锂沉积物的形成和抑制树突的形成。使用LiFePO4阴极制造的锂金属电池表现出稳定的平坦电压曲线,具有低偏振,用于超过300个循环,表明调节质量传输的效果。

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