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Vertical Graphenes Grown on a Flexible Graphite Paper as an All-Carbon Current Collector towards Stable Li Deposition

机译:在柔性石墨纸上生长的垂直石墨符作为全碳集电器朝向稳定LI沉积

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摘要

Lithium (Li) metal has been regarded as one of the most promising anode materials to meet the urgent requirements for the next-generation high-energy density batteries. However, the practical use of lithium metal anode is hindered by the uncontrolled growth of Li dendrites, resulting in poor cycling stability and severe safety issues. Herein, vertical graphene (VG) film grown on graphite paper (GP) as an all-carbon current collector was utilized to regulate the uniform Li nucleation and suppress the growth of dendrites. The high surface area VG grown on GP not only reduces the local current density to the uniform electric field but also allows fast ion transport to homogenize the ion gradients, thus regulating the Li deposition to suppress the dendrite growth. The Li deposition can be further guided with the lithiation reaction between graphite paper and Li metal, which helps to increase lithiophilicity and reduce the Li nucleation barrier as well as the overpotential. As a result, the VG film-based anode demonstrates a stable cycling performance at a current density higher than 5 mA cm−2 in half cells and a small hysteresis of 50 mV at 1 mA cm−2 in symmetric cells. This work provides an efficient strategy for the rational design of highly stable Li metal anodes.
机译:锂(Li)金属被认为是最有前途的阳极材料之一,以满足下一代高能量密度电池的迫切要求。然而,通过Li Dendrites的不受控制的生长阻碍了锂金属阳极的实际用途,导致循环稳定性差和严重的安全问题。这里,在石墨纸(GP)上生长的垂直石墨烯(VG)膜作为全碳集电器的薄膜调节均匀李成核并抑制树突的生长。在GP上生长的高表面积Vg不仅将局部电流密度降低到均匀的电场,而且还允许快速离子传输均匀化离子梯度,从而调节LI沉积以抑制树突生长。 Li沉积可以进一步引导石墨纸和Li金属之间的锂化反应,这有助于增加锂硅酸性,并减少李核屏障以及过电位。结果,基于VG膜的阳极在半细胞中的电流密度高于5 mA cm-2的电流密度下稳定的循环性能,并且在对称细胞中为1mA cm-2的小滞后。这项工作为高度稳定的Li金属阳极合理设计提供了有效的策略。

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