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(0335)Back‐Integration of Recovered Graphite from Waste‐Batteries as Ultra‐High Capacity and Stable Anode for Potassium‐Ion Battery

机译:(0335)从废物batteries中回收的石墨的后整合,作为超高容量和稳定的钾离子电池阳极

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Abstract The rapid growth of lithium‐ion batteries (LIBs) in many markets from portable electronics to large scale electric vehicles makes it increasingly urgent to address recycling of strategic materials from used batteries. Herein, we report the excellent electrochemical performance of recycled graphite (REG) from spent LIBs, which was successfully employed as an anode in potassium‐ion batteries (KIBs). The graphite‐anode not only delivers highly reversible capacity of 361.4?mAh?g?1 (at 0.1?C) but also demonstrates good long‐term cycling stability. The phase evolution of electrochemically potassium intercalated/deintercalated REG electrodes is elucidated using in‐situ X‐ray diffraction. The well‐preserved structure of the recycled graphite makes it ideal host for reversible intercalation and de‐intercalation of K‐ions. Furthermore, a potassium‐hybrid capacitor was fabricated by coupling the recycled graphite with textile waste‐derived activated carbon as cathode material. The cell demonstrates considerable energy density of 84.5?Wh?kg?1 and power density of 400?W?kg?1, respectively. Apart from the great electrochemical performances, the low‐cost, abundant, and sustainable recycled graphite in this work will help to address the challenges in Li‐ion battery recycling and show the prospects of next‐generation battery system development.
机译:摘要从便携式电子设备到大型电动汽车的许多市场中锂离子电池(LIB)的快速增长使得越来越紧迫地解决用二手电池的战略材料的回收。在本文中,我们报告了用过的Libs回收石墨(REG)的出色电化学性能,该石墨已成功用作钾离子电池(KIBS)的阳极。石墨 - 不仅具有361.4?mah?g?1(0.1?c)的高度可逆能力,而且还表现出良好的长期循环稳定性。电化学上钾的相位插入/去解释的雷德电极的相位演化是使用X射线内衍射阐明的。可回收石墨保存完好的结构使其成为可逆插入和k -ions解剖结构的理想宿主。此外,通过将回收的石墨与纺织废物衍生的活性碳作为阴极材料耦合来制造钾杂化电容器。该细胞显示出相当大的能量密度为84.5?wh?kg?1,功率密度分别为400?w?kg?1。除了出色的电化学性能外,在这项工作中,低成本,丰富和可持续的再生石墨将有助于应对李离子电池回收的挑战,并展示下一代电池系统开发的前景。

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