首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Hierarchically structured MnO2/graphene/carbon fiber and porous graphene hydrogel wrapped copper wire for fiber-based flexible all-solid-state asymmetric supercapacitors
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Hierarchically structured MnO2/graphene/carbon fiber and porous graphene hydrogel wrapped copper wire for fiber-based flexible all-solid-state asymmetric supercapacitors

机译:分层结构的MnO2 /石墨烯/碳纤维和多孔石墨烯水凝胶包裹的铜线,用于基于纤维的柔性全固态非对称超级电容器

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摘要

Recent progress in fiber-based supercapacitors has attracted tremendous attention due to the tiny volume, high flexibility and weavability of the fibers, which are required for the development of high-performance fiber electrodes. In this work, we report for the first time, the design and fabrication of two types of core-shell fiber-based electrodes, i.e. hierarchically structured manganesedioxide (MnO2)/graphene/ carbon fiber (CF) and three-dimensional (3D) porous graphene hydrogel (GH) wrapped copper wire (CW), and their practical application in a fiber-architectured flexible all-solid-state supercapacitor. Taking advantage of the synergistic effects of the different components in the hierarchically structured nanohybrid fiber electrodes and the merits of the proposed synthesis strategies, the assembled asymmetric supercapacitor device using MnO2/graphene/CF as the positive electrode and GH/CW as the negative electrode could be cycled reversibly in a high-voltage region of 0-1.6 V, delivering a high areal energy density of 18.1 mu W h cm(-2) and volumetric energy density of 0.9 mW h cm(-3). Furthermore, our fiber-based flexible supercapacitor also shows a good rate capability, excellent flexibility and high long term cyclability, which makes it a promising power source for flexible energy-related devices.
机译:基于纤维的超级电容器的最新进展由于其体积小,纤维的高柔韧性和可编织性而引起了极大的关注,这是开发高性能纤维电极所必需的。在这项工作中,我们首次报告了两种类型的核壳纤维基电极的设计和制造,即分层结构的二氧化锰(MnO2)/石墨烯/碳纤维(CF)和三维(3D)多孔石墨烯水凝胶(GH)包裹的铜线(CW)及其在纤维体系结构柔性全固态超级电容器中的实际应用。利用MnO2 /石墨烯/ CF为正极,GH / CW为负极的组装的不对称超级电容器,可以利用分层结构的纳米杂化纤维电极中不同组分的协同作用和合成策略的优点。在0-1.6 V的高压区域中可逆循环,提供18.1μW h cm(-2)的高面能量密度和0.9 mW h cm(-3)的体积能量密度。此外,我们的基于纤维的柔性超级电容器还显示出良好的速率能力,出色的柔性和较高的长期可循环性,这使其成为用于柔性能源相关设备的有希望的电源。

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