首页> 外文OA文献 >A one-step and binder-free method to fabricate hierarchical nickel-based supercapacitor electrodes with excellent performance
【2h】

A one-step and binder-free method to fabricate hierarchical nickel-based supercapacitor electrodes with excellent performance

机译:一站式,无粘结剂的性能优异的分层镍基超级电容器电极的制造方法

摘要

Research is currently being carried out in the search for alternative electrode materials to replace the expensive and toxic RuO2-based electrode. As a typical example, nickel oxide or hydroxide has been widely studied but the results are far from satisfactory. Here, using a facile one-step anodization method, a hierarchical nickel compound (HNC) film with an interconnecting 3D nanoflake structure is obtained, providing large electrochemically active surface area and interconnecting nanoscale pore channels for ion transport. The HNC electrode demonstrates significantly improved capacitance, 70 times higher than the reported NiO-TiO2 nanotube array electrode with similar thickness. The charge/discharge kinetics are also superior, showing only a 24% capacitance reduction when the scan rate is increased by 50 times, as compared with the typical 70% capacitance reduction for pseudocapacitor electrodes under the same conditions. HNC exhibits an extraordinary excellent cycle life; capacitance increases to 115% after 4500 test cycles. Furthermore, because HNC is in intimate contact with the current collector, it is not necessary to use conducting agents or binders, which reduces the electrode weight and facilitates the electrode preparation process. The method is low cost, facile, scalable, additive free, and is promising for fabricating supercapacitor electrode with excellent performance. A hierarchical nickel compound (HNC) film is prepared using a facile, one-step, and binder-free method. The HNC demonstrates both large capacitance and superior rate capability. The capacitance reduction is only 24%, even when the scan rate is increased by 50 times. The HNC also exhibits an excellent cycle life.
机译:当前正在寻找替代的电极材料来代替昂贵且有毒的RuO2基电极的研究。作为一个典型的例子,氧化镍或氢氧化镍已被广泛研究,但结果远不能令人满意。在这里,使用简便的一步阳极氧化方法,可以获得具有互连3D纳米片结构的分层镍化合物(HNC)膜,提供了较大的电化学活性表面积和互连的纳米级孔道,以进行离子迁移。 HNC电极显示出明显改善的电容,比报道的具有相似厚度的NiO-TiO2纳米管阵列电极高70倍。充电/放电动力学也很出色,与相同条件下伪电容器电极的典型电容降低70%相比,扫描速率提高50倍时,电容降低仅24%。 HNC具有非凡的出色循环寿命;经过4500个测试周期后,电容增加到115%。此外,由于HNC与集电器紧密接触,因此无需使用导电剂或粘合剂,这可以减轻电极重量并简化电极制备过程。该方法成本低廉,简便,可扩展,无添加剂,有望用于制造性能优异的超级电容器电极。分层镍化合物(HNC)膜使用一种简便,一步一步且不含粘合剂的方法制备。 HNC展示了大电容和出色的速率能力。即使扫描速率提高了50倍,电容减小也仅为24%。 HNC还具有出色的循环寿命。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

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