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Lithium Batteries with Nearly Maximum Metal Storage

机译:锂电池与几乎最大的金属储存

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The drive for significant advancement in battery capacity and energy density inspired a revisit to the use of Li metal anodes. We report the use of a seamless graphene-carbon nanotube (GCNT) electrode to reversibly store Li metal with complete dendrite formation suppression. The GCNT-Li capacity of 3351 mAh g(GCNT-Li)(-1) approaches that of bare Li metal (3861 mAh g(Li)(-1)), indicating the low contributing mass of GCNT, while yielding a practical areal capacity up to 4 mAh cm(-2) and cycle stability. A full battery based on GCNT-Li/sulfurized carbon (SC) is demonstrated with high energy density (752 Wh kg(-1) total electrodes, where total electrodes = GCNT-Li + SC + binder), high areal capacity (2 mAh cm(-2)), and cyclability (80% retention at >500 cycles) and is free of Li polysulfides and dendrites that would cause severe capacity fade.
机译:电池容量和能量密度的显着进步的驱动器激发了对使用Li金属阳极的重新审视。 我们报告使用无缝石墨烯 - 碳纳米管(GCNT)电极可逆地存储Li金属,具有完全的树突式形成抑制。 GCNT-LI容量为3351mAhg(GCNT-Li)( - 1)接近裸Li金属(3861mAhg(Li)( - 1)),表明GCNT的低贡献质量,同时产生实际的面积 容量高达4mAh(-2)和循环稳定性。 基于GCNT-LI /硫化碳(SC)的全电池以高能量密度(752WH kg(-1)总电极,其中总电极= GCNT-Li + SC +粘合剂),高度的面积容量(2 MAH CM(-2))和可循环性(80%静脉保留> 500次循环),没有Li多硫化物和枝晶,导致严重的容量褪色。

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