Design of Miura Folding-Based Micro-Supercapacitors as Foldable and Miniaturized Energy Storage Devices

B. Song, Yun Chen, K. Moon, C. Wong
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引用次数: 4

Abstract

In this report, the prototype of micro-supercapacitor (MSC) arrays based on the art of paper folding (Miura folding) were demonstrated as foldable and miniaturized energy storage components. The Miura folding is a method to fold a flat surface into crease patterns consisting of parallelograms with smaller areas. Here each MSC unit was made by deposition of conductive graphene sheets followed by plasma etching to form the interdigitated patterns. The single MSC unit delivered a large areal capacitance of 1.5 mF/cm2 with excellent power handling capability. The foldable MSC arrays consisting of 3×2 patterns were connected via combinations of series and parallel configurations. The folded MSCs showed ~4.3 times increase in areal capacitance with improved energy densities.
基于Miura折叠的微型超级电容器可折叠和小型化储能装置的设计
在本报告中,基于折纸艺术(Miura折叠)的微型超级电容器(MSC)阵列原型被证明是可折叠和小型化的储能组件。Miura折叠是一种将平面折叠成由面积较小的平行四边形组成的折痕图案的方法。在这里,每个MSC单元都是通过导电石墨烯片的沉积,然后通过等离子体蚀刻形成交错的图案来制作的。单个MSC单元提供1.5 mF/cm2的大面积电容,具有出色的功率处理能力。由3×2模式组成的可折叠MSC阵列通过串联和并联组合的方式连接。随着能量密度的提高,折叠后的MSCs的面电容增加了约4.3倍。
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