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Packing Activated Carbons into Dense Graphene Network by Capillarity for High Volumetric Performance Supercapacitors

机译:通过毛细作用将活性炭填充到致密的石墨烯网络中从而获得高性能的超级电容器

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摘要

Supercapacitors are increasingly in demand among energy storage devices. Due to their abundant porosity and low cost, activated carbons are the most promising electrode materials and have been commercialized in supercapacitors for many years. However, their low packing density leads to an unsatisfactory volumetric performance, which is a big obstacle for their practical use where a high volumetric energy density is necessary. Inspired by the dense structure of irregular pomegranate grains, a simple yet effective approach to pack activated carbons into a compact graphene network with graphene as the “peels” is reported here. The capillary shrinkage of the graphene network sharply reduces the voids between the activated carbon particles through the microcosmic rearrangement while retaining their inner porosity. As a result, the electrode density increases from 0.41 to 0.76 g cm−3. When used as additive‐free electrodes for supercapacitors in an ionic liquid electrolyte, this porous yet dense electrode delivers a volumetric capacitance of up to 138 F cm−3, achieving high gravimetric and volumetric energy densities of 101 Wh kg−1 and 77 Wh L−1, respectively. Such a graphene‐assisted densification strategy can be extended to the densification of other carbon or noncarbon particles for energy devices requiring a high volumetric performance.
机译:储能设备中对超级电容器的需求日益增长。由于其丰富的孔隙率和低成本,活性炭是最有前途的电极材料,并且已经在超级电容器中商业化了很多年。然而,它们的低堆积密度导致不能令人满意的体积性能,这对于需要高体积能量密度的它们的实际使用是一个很大的障碍。受不规则石榴粒的致密结构的启发,这里报道了一种简单而有效的方法,即将活性炭包装成紧密的石墨烯网络,并以石墨烯作为“果皮”。石墨烯网络的毛细收缩通过微观重排显着减少了活性炭颗粒之间的空隙,同时保留了它们的内部孔隙率。结果,电极密度从0.41g增加到0.76g cm -3 。当用作离子液体电解质中超级电容器的无添加剂电极时,该多孔而致密的电极可提供高达138 F cm -3 的体积电容,从而实现101 Wh的高重量和体积能量密度kg -1 和77 Wh L -1 。这种石墨烯辅助的致密化策略可以扩展到要求高体积性能的能源设备中其他碳或非碳颗粒的致密化。

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