塔菲尔方程
超级电容器
过电位
纳米线
材料科学
介孔材料
电极
化学工程
镍
电容
氢氧化物
钴
阳极
电化学
纳米技术
氧化钴
比表面积
掺杂剂
催化作用
纳米片
兴奋剂
化学
光电子学
冶金
物理化学
工程类
生物化学
作者
Zhuoni Zhu,Wen Tian,Xingbin Lv,Feifei Wang,Zhufeng Hu,Kui Ma,Caihong Wang,Tao Yang,Yuxin Zhang
标识
DOI:10.1016/j.jcis.2020.11.046
摘要
The rational structure design and controllable surface modification of electrode materials plays a decisive role in constructing high performance energy storage and conversion devices. Herein, the P-doped cobalt carbonate hydroxide@NiMoO 4 (P-CoCH@NiMoO 4 ) nanowires@nanosheets double-shell hierarchical structure is successfully fabricated on nickel foam. The unique nanowire@nanosheet structure with gradient porous distribution and hydrophilic nature can facilitate both the charge and electron transfer based on the synergetic effects with conductive NiMoO 4 array. Importantly, the dopant of P element can enrich oxygen vacancies on the surface of CoCH nanowire, thus increase the effective active sites and enhance the electrocatalytic performance. Therefore, when act as the supercapacitor electrode, the bi-functional P-CoCH@NiMoO 4 /NF material achieves high areal capacitance (5.08 F cm −2 at 2 mA cm −2 , 0.75 mAh cm −2 ) and good cyclic stability (82.7% capacitance retention after 2000 cycles). Meanwhile, when utilize as the hydrogen evolution electrode in alkaline solution, a low overpotential (115 mV at 10 mA cm −2 ) and Tafel slope (113.5 mV dec −1 ) can also be achieved.
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