...
首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A high energy density and high rate capability flexible supercapacitor based on electro-spun highly porous SnO2@carbon nanofibers
【24h】

A high energy density and high rate capability flexible supercapacitor based on electro-spun highly porous SnO2@carbon nanofibers

机译:基于电纺高度多孔SnO2碳纳米纤维的高能量密度和高速率能力柔性超级电容器

获取原文
获取原文并翻译 | 示例

摘要

The energy density of the present state-of-the-art materials remains the main challenge for commercial utilization of supercapacitor devices. Therefore, the development of highly active electrode materials with improved energy density, while preserving their exceptional power density besides introducing cost-effective and environmentally benign materials has recently become a major research interest. On this aspect, we present a cost-effective and highly efficient flexible supercapacitor based on SnO2@carbon nanofibers synthesizedviathe electrospinning of SnO(2)precursor with PVP followed by calcination. The prepared highly porous, uniform, one-dimensional SnO2@carbon nanofibers without externally added activated carbon mounted on a carbon cloth substrate were used to fabricate a flexible supercapacitor. The fabricated supercapacitor exhibited a very high specific capacitance of 646.15 F g(-1)at an energy density of 152 W h kg(-1)(0.08 W h cm(-2)) and power density of 39 kW kg(-1)(4.87 W h cm(-2)) at a very high current density of 60 A g(-1). An asymmetric supercapacitor also depicts high energy density of 4.7 W h kg(-1)(0.003 W h cm(-2)) at a power density of 3200 W kg(-1)(1.67 W cm(-2)) and a current density of 0.2 A g(-1). Furthermore, it displays an excellent cyclic stability even after 1000 continuous charge-discharge cycles at a constant but very high current density of 80 A g(-1). The presented material shows the highest specific capacitance ever reported for electro-spun SnO(2)nanofibers.
机译:目前最先进材料的能量密度仍然是超级电容器装置商业利用的主要挑战。因此,除了引入成本效益和环境良性的材料之外,高活性电极材料的发展具有改善的能量密度,同时保持其特殊的功率密度最近成为一个主要的研究兴趣。在这方面,我们提出了一种基于SnO2 @碳纳米纤维合成型SnO(2)前体的静电纺丝的成本效益和高效的柔性超级电容器,其具有PVP,然后进行煅烧。使用安装在碳布基材上的制备的高度多孔,均匀,一维SnO2碳纳米纤维,无需外部添加的碳,用于制造柔性超级电容器。制造的超级电容器以152WH kg(-1)的能量密度(0.08WH cm(-2))和39 kW kg的功率密度,表现出非常高的646.15ff g(-1)的特定电容。(-1 )(4.87WH厘米(-2))以60ag(-1)的非常高的电流密度。不对称超级电容器还将高能量密度为4.7WH kg(-1)(0.003WH厘米(-2)),功率密度为3200W kg(-1)(1.67W cm(-2))和a电流密度为0.2Ag(-1)。此外,即使在8000Ag(-1)的恒定但非常高的电流密度为1000连续电荷放电循环之后,它也显示出优异的循环稳定性。所呈现的材料显示出用于电动纺丝(2)纳米纤维的最高特定电容。

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