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Two-dimensional molecular brush-functionalized porous bilayer composite separators toward ultrastable high-current density lithium metal anodes

机译:二维分子刷官能化多孔双层复合分离器朝向可透明的高电流密度锂金属阳极

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Lithium metal batteries have been considerably limited by the problems of uncontrolled dendritic lithium formation and the highly reactive nature of lithium with electrolytes. Herein, we have developed functional porous bilayer composite separators by simply blade-coating polyacrylamide-grafted graphene oxide molecular brushes onto commercial polypropylene separators. Our functional porous bilayer composite separators integrate the lithiophilic feature of hairy polyacrylamide chains and fast electrolyte diffusion pathways with the excellent mechanical strength of graphene oxide nanosheets and thus enable molecular-level homogeneous and fast lithium ionic flux on the surfaces of electrodes. As a result, dendrite-free uniform lithium deposition with a high Coulombic efficiency (98%) and ultralong-term reversible lithium plating/stripping (over 2600?h) at a high current density (2?mA?cm?2) are achieved for lithium metal anodes. Remarkably, lithium metal anodes with an unprecedented stability of more than 1900?h cycling at an ultrahigh current density of 20?mA?cm?2 are demonstrated.
机译:锂金属电池受到不受控制的树突式锂形成问题和电解质锂的高反应性的影响。在此,我们通过简单的叶片涂布聚丙烯酰胺接枝的石墨烯刷在商业聚丙烯分离器上通过简单地开发了功能多孔双层复合物分离器。我们的功能性多孔双层复合分离器整合了毛状聚丙烯酰胺链和快速电解质扩散途径的锂硅基特征,具有优异的石墨烯纳米液的机械强度,从而使电极表面上的分子水平均匀和快速锂离子通量能够。结果,在高电流密度(2Ωma≤CM2)下,具有高库仑效率(98%)和超高术级锂镀锌/剥离(超过2600〜H)的双晶均匀锂沉积用于锂金属阳极。值得注意的是,锂金属阳极具有前所未有的稳定性,超过1900°H循环,以超高电流密度为20Ω·cm≤2。

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