响应面法
材料科学
电致变色
镍
钴
电极
中心组合设计
双金属片
循环伏安法
储能
比表面积
复合数
化学工程
电化学
复合材料
化学
冶金
色谱法
功率(物理)
金属
催化作用
有机化学
量子力学
物理化学
工程类
物理
作者
Muhammad Norhaffis Mustafa,Muhammad Amirul Aizat Mohd Abdah,Arshid Numan,Yusran Sulaiman,Rashmi Walvekar,Mohammad Khalid
标识
DOI:10.1016/j.electacta.2022.141765
摘要
In this paper, we report the optimization of nickel cobalt phosphate (NiCoP) as a positive electrode material by response surface methodology and central composite design (RSM/CCD) for electrochromic energy storage applications. The NiCoP composite was prepared using the facile electrodeposition technique, where four input variables (concentration of precursors, number of CV cycles, and scan rate) were optimized simultaneously towards the surface response (specific capacity). The statistical analysis showed that all four factors have significantly affected the specific capacity of NiCoP. The reduced quadratic model obtained can accurately predict the specific capacity of NiCoP electrode material up to 97% with a 3% residual standard error. The novel NiCoP electrode materials display remarkable electrochromic properties (67.57 cm2/C) with reversible color changes from light green (0 V) to dark brown (0.5 V) and outstanding supercapacitive performance (323.74 C/g) owing to the synergistic effect of bimetallic oxides (NiCo) that help to produce more active sites, as well as increase the electrical conductivity and high surface area phosphate, which is advantageous to the transport of ions. Furthermore, the as-prepared NiCoP//Ac device shows a remarkably high specific energy of 10.88 Wh/kg at a specific power of 750 W/kg (1 A/g), and the NiCoP//Ac device is capable of retaining up to 70% of its capacity even after 5000 cycles, demonstrating good energy storage performances.
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