High-Voltage Flexible Microsupercapacitors Based on Laser-Induced Graphene

By Li, Xiaoqian; Cai, Weihua; Teh, Kwok Siong; Qi, Mingjing; Zang, Xining; Ding, Xinrui; Cui, Yong; Xie, Yingxi; Wu, Yichuan; Ma, Hongyu; Zhou, Zaifa; Huang, Qing-An; Ye, Jianshan; Lin, Liwei
Published in ACS Applied Materials & Interfaces 2018

Abstract

High-voltage energy-storage devices are quite commonly needed for robots and dielectric elastomers. This paper presents a flexible high-voltage microsupercapacitor (MSC) with a planar in-series architecture for the first time based on laser-induced graphene. The high-voltage devices are capable of supplying output voltages ranging from a few to thousands of volts. The measured capacitances for the 1, 3, and 6 V MSCs were 60.5, 20.7, and 10.0 ?F, respectively, under an applied current of 1.0 ?A. After the 5000-cycle charge

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