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Thick electrodes upon biomass-derivative carbon current collectors: High-areal capacity positive electrodes for aluminum-ion batteries

机译:生物质衍生碳电流收集器上的厚电极:用于铝离子电池的高面积容量正电极

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Rechargeable aluminum-ion batteries (AlBs) are considered as low-cost safe energy storage devices beyond lithium-ion batteries, due to the high volumetric capacity and rich abundance of aluminum. However, the highly corrosive room temperature ionic liquid electrolyte causes serious problems in the traditional metal current collectors, and electrochemical inert metals with higher density have been commonly used, which leads to dramatic decreased material utilization in the positive electrode. For addressing such issues, here a biomass-derivative carbon (BDC) current collector is demonstrated to construct millimeter-scale thick positive electrodes based on two types of graphite active materials (with different planar sizes) and two electrode configurations. The results suggest the strategy of using single-side casting process with graphite of smaller planar size would be more promising to promote the overall electrochemical properties and energy storage performance. The as-assembled thick electrode (with thickness up to similar to 2 mm) using the same type of graphite is able to deliver much enlarged areal loading (36 mg cm(-2)), showing greater areal capacity for energy storage. The strategy and mechanism in this work offers a considerable approach for improving the current collectors and promoting the graphite proportion in AIBs. (C) 2019 Elsevier Ltd. All rights reserved.
机译:可充电铝离子电池(ALB)被认为是锂离子电池之外的低成本安全储能设备,由于铝的容量高,丰富丰富的铝。然而,高腐蚀室温离子液体电解质在传统的金属集电器中引起严重的问题,并且常用密度具有更高密度的电化学惰性金属,这导致正电极中的材料利用率降低。为了解决这些问题,这里的生物质 - 衍生碳(BDC)集电器被证明基于两种类型的石墨活性材料(具有不同的平面尺寸)和两个电极配置来构建毫米级厚正电极。结果表明,使用较小平面尺寸的石墨使用单侧铸造过程的策略将更有希望,以促进整体电化学性能和能量存储性能。使用相同类型的石墨的组装厚电极(厚度至2mm)能够提供大量扩大的面积载荷(36mg cm(-2)),显示出更大的能量储存容量。这项工作中的战略和机制提供了一种相当大的方法,可以改善集中器,促进AIB中的石墨比例。 (c)2019 Elsevier Ltd.保留所有权利。

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