...
首页> 外文期刊>Scientific reports. >High-performance solid state supercapacitors assembling graphene interconnected networks in porous silicon electrode by electrochemical methods using 2,6-dihydroxynaphthalen
【24h】

High-performance solid state supercapacitors assembling graphene interconnected networks in porous silicon electrode by electrochemical methods using 2,6-dihydroxynaphthalen

机译:使用2,6-二羟基萘通过电化学方法在多孔硅电极中组装石墨烯互连网络的高性能固态超级电容器

获取原文
           

摘要

The challenge for conformal modification of the ultra-high internal surface of nanoporous silicon was tackled by electrochemical polymerisation of 2,6-dihydroxynaphthalene using cyclic voltammetry or potentiometry and, notably, after the thermal treatment (800?°C, N2, 4?h) an assembly of interconnected networks of graphene strongly adhering to nanoporous silicon matrix resulted. Herein we demonstrate the achievement of an easy scalable technology for solid state supercapacitors on silicon, with excellent electrochemical properties. Accordingly, our symmetric supercapacitors (SSC) showed remarkable performance characteristics, comparable to many of the best high-power and/or high-energy carbon-based supercapacitors, their figures of merit matching under battery-like supercapacitor behaviour. Furthermore, the devices displayed high specific capacity values along with enhanced capacity retention even at ultra-high rates for voltage sweep, 5?V/s, or discharge current density, 100?A/g, respectively. The cycling stability tests performed at relatively high discharge current density of 10?A/g indicated good capacity retention, with a superior performance demonstrated for the electrodes obtained under cyclic voltammetry approach, which may be ascribed on the one hand to a better coverage of the porous silicon substrate and, on the other hand, to an improved resilience of the hybrid electrode to pore clogging.
机译:纳米多孔硅的超高内表面的保形改性面临的挑战是通过使用循环伏安法或电位计,特别是在热处理(800?C,N2、4?h )形成了牢固粘附到纳米多孔硅基体上的相互连接的石墨烯网络。在本文中,我们展示了具有优异电化学性能的硅上固态超级电容器的易扩展技术的实现。因此,我们的对称超级电容器(SSC)具有出色的性能特征,可与许多最佳的高功率和/或高能量的碳基超级电容器相媲美,其品质因数在类似电池的超级电容器行为下可匹配。此外,即使在超高速率下,电压扫描(5?V / s)或放电电流密度(100?A / g)时,这些器件也显示出高的比容量值以及更高的容量保持率。在10?A / g的相对较高的放电电流密度下进行的循环稳定性测试显示出良好的容量保持性,对于在循环伏安法下获得的电极表现出优异的性能,这可能归因于一方面更好地覆盖了电极。多孔硅衬底,另一方面,提高了混合电极对孔堵塞的弹性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号