...
首页> 外文期刊>Nanotechnology >Free-standing interconnected carbon nanofiber electrodes: new structural designs for supercapacitor application
【24h】

Free-standing interconnected carbon nanofiber electrodes: new structural designs for supercapacitor application

机译:独立式互连的碳纳米纤维电极:超级电容器应用的新型结构设计

获取原文
获取原文并翻译 | 示例
           

摘要

This work aims to develop and characterize a new design of free-standing interconnected carbon nanofiber electrodes for supercapacitor application. The fibers are obtained via carbonization of three components of electrospun nanofiber mats based on a polyacrylonitrile polymer (as a carbon backbone precursor), polyvinylalcohol (as a sacrificial copolymer), and 0-1.0 wt% multi-walled carbon nanotubes. Carbonizing these ternary composites results in fibers with about twice as large in surface area and one order of magnitude higher in electrical conductivity than those obtained by the carbonization of neat polyacrylonitrile and/or binary polyacrylonitrile-0-1.0 wt% carbon nanotube mats. The carbonized polyacrylonitrile-polyvinylalcohol-0.3 wt% carbon nanotube mat reveals the highest surface area and electrical conductivity and best capacitive performance. It exhibits energy and power densities of 27.8Wh kg(-1) and 110.59 kW kg(-1), respectively, and cyclic stability of 95% after 2000 charge-discharge cycles at a charging current of 1.0 Ag-1. The nanotubes' alignment along the fiber's axis, the formation of fiber-fiber interconnected morphology with more mesopore pollution, and changes in the graphitization degree and defect features of fiber crystallites are the reasons for the observed increase in the electrical conductivity, surface area, and capacitive performance of the carbon fibers. Therefore, the new design represents a potential free-standing carbon nanofiber electrode for future electrochemical double layer capacitor (EDLC) device fabrication.
机译:这项工作旨在开发和表征用于超级电容器应用的独立互连碳纳米纤维电极的新设计。通过基于聚丙烯腈聚合物(作为碳骨架前体),聚乙烯醇(作为牺牲共聚物)和0-1.0wt%多壁碳纳米管,通过碳化纤维的电纺纳米纤维垫的三种组分获得。碳化这些三元复合材料导致表面积大约两倍大的纤维,并且电导率高出一种级,电导率高于通过纯聚丙烯腈和/或二元聚丙烯腈-0-1.0wt%碳纳米管垫的碳化而获得的电导率。碳化的聚丙烯腈 - 聚乙烯醇-0.3wt%碳纳米管垫揭示了最高的表面积和电导率和最佳的电容性能。它分别显示出27.8Wh kg(-1)和110.59千瓦kg(-1)的能量和功率密度,并在2000℃的充电电流为1.0 ag-1的充电放电循环后循环稳定性为95%。沿纤维轴的纳米管对准,形成纤维 - 纤维互连形态的形成,具有更多的缺陷污染,以及纤维微晶的石墨化程度和缺陷特征的变化是观察到导电性,表面积和升高的原因碳纤维的电容性能。因此,新设计代表了用于未来电化学双层电容器(EDLC)器件制造的潜在的独立碳纳米纤维电极。

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