...
首页> 外文期刊>Scientific reports. >A cheap and non-destructive approach to increase coverage/loading of hydrophilic hydroxide on hydrophobic carbon for lightweight and high-performance supercapacitors
【24h】

A cheap and non-destructive approach to increase coverage/loading of hydrophilic hydroxide on hydrophobic carbon for lightweight and high-performance supercapacitors

机译:一种廉价且无损的方法,可提高轻质和高性能超级电容器在疏水性碳上的亲水性氢氧化物的覆盖率/负载量

获取原文
           

摘要

Carbon-based substrates offer unprecedented advantages in lightweight supercapacitors. However, it is still challenging to achieve high coverage or loading. Different from the traditional belief that a lack of defects or functional groups is the cause of poor growth on carbon-based substrates, we reckon that the major cause is the discrepancy between the hydrophilic nature of the metal oxide/hydroxide and the hydrophobic nature of carbon. To solve this incompatibility, we introduced ethanol into the precursor solution. The method to synthesize nickel copper hydroxide on carbon fiber paper employs only water and ethanol, in addition to nickel acetate and copper acetate. The results revealed good growth and tight adhesion of active materials on carbon fiber paper substrates. The specific capacitance and energy density per total weight of the active material plus substrate (carbon fiber paper, current collector) reached 770?F g?1 and 33?Wh kg?1 (1798?F g?1 and 54?Wh kg?1 per weight of the active materials), owing to the high loading of active material and the light weight of carbon fiber paper. These results signified the achievability of light, cheap and high-performance supercapacitors by an environmental-friendly approach.
机译:碳基基板在轻型超级电容器中提供了前所未有的优势。但是,实现高覆盖率或负载仍然是挑战。与传统的认为缺陷或官能团不足是在碳基基材上生长不良的原因的传统看法不同,我们认为主要原因是金属氧化物/氢氧化物的亲水性与碳的疏水性之间的差异。为了解决这种不兼容问题,我们将乙醇引入了前体溶液中。在碳纤维纸上合成氢氧化镍镍铜的方法除了乙酸镍和乙酸铜之外,仅使用水和乙醇。结果显示活性材料在碳纤维纸基材上的良好生长和紧密粘合。活性物质加基材(碳纤维纸,集电器)的总重量的比电容和能量密度分别达到770?F g ?1 和33?Wh kg ?1 (每活性物质重量1798?F g ?1 和54?Wh kg ?1 ),这是由于活性物质的高负载和重量轻碳纤维纸。这些结果表明,采用环保方法可实现轻便,廉价和高性能的超级电容器。

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