Ren Ruquan, Zhong Yan, Ren Xueyong, Fan Yongming
College of Material Science and Technology, Beijing Forestry University Beijing 100083 China
RSC Adv. 2022 Sep 12;12(39):25807-25814. doi: 10.1039/d2ra03949d. eCollection 2022 Sep 5.
Flexible supercapacitors have attracted widespread attention from many researchers as a type of portable energy storage device. As a unique carbon material, graphene has shown great potential in supercapacitor electrodes, mainly due to its large theoretical specific surface area, high conductivity and chemical stability. Therefore, reasonable design of graphene-based hydrogels with low cost, high specific surface area, and excellent mechanical properties is of great significance for flexible and wearable energy storage device applications. Oxygen-doped activated carbon/graphene composite hydrogels have been fabricated using a one-step hydrothermal method. In the hybrid hydrogel, the activated carbon derived from chitosan with high specific surface area and oxygen-containing groups which were introduced by using a facile room-temperature oxidation strategy with HNO are assembled into the framework of reduced graphene oxide (rGO) to effectively prevent the restacking of rGO nanosheets and result in high specific surface area and high conductivity of the composite hydrogels, thereby leading to an excellent energy storage performance. The optimal sample displayed a high specific capacitance of 375.7 F g in 1 M HSO electrolyte at a current density of 1 A g. Furthermore, the assembled flexible supercapacitor showed an ideal cycling stability of 83% after 5000 charge/discharge cycles at 10 A g. The facile strategy developed in this work is of significance for the performance improvement of supercapacitor electrode materials.
作为一种便携式储能装置,柔性超级电容器已引起众多研究人员的广泛关注。作为一种独特的碳材料,石墨烯在超级电容器电极中显示出巨大潜力,这主要归因于其大的理论比表面积、高导电性和化学稳定性。因此,合理设计低成本、高比表面积且具有优异机械性能的基于石墨烯的水凝胶对于柔性和可穿戴储能装置的应用具有重要意义。采用一步水热法制备了氧掺杂活性炭/石墨烯复合水凝胶。在这种混合水凝胶中,由壳聚糖衍生而来的具有高比表面积和含氧基团的活性炭(通过使用HNO3的简便室温氧化策略引入)组装到还原氧化石墨烯(rGO)的框架中,以有效防止rGO纳米片的重新堆叠,并导致复合水凝胶具有高比表面积和高导电性,从而产生优异的储能性能。最佳样品在1 M H2SO4电解质中,电流密度为1 A g-1时,显示出375.7 F g-1的高比电容。此外,组装的柔性超级电容器在10 A g-1下进行5000次充/放电循环后,显示出83%的理想循环稳定性。这项工作中开发的简便策略对于超级电容器电极材料的性能提升具有重要意义。