阳极
材料科学
氨
催化作用
合金
镍
阴极
化学工程
循环伏安法
电极
电流密度
碳纤维
金属
功率密度
无机化学
基质(水族馆)
微生物燃料电池
电化学
氨生产
色散(光学)
燃料电池
过渡金属
交换电流密度
旋转圆盘电极
质子交换膜燃料电池
作者
Jian Liu,Yuchen Xu,Shuhan Zhang,Qiao Lan
标识
DOI:10.1021/acs.iecr.5c03238
摘要
Nickel (Ni) has become a nonprecious metal catalyst of great interest in direct ammonia fuel cell (DAFC) research owing to its low cost and plentiful reserves. However, in the ammonia oxidation reaction (AOR), the poor electrocatalytic activity of Ni limits the DAFC performance and application. Here, we design a cauliflower-like NiCu nanosphere alloy (Ni@NiCu/CP) by cyclic voltammetry (CV) and square wave potential (SWP) electrodeposition on carbon paper (CP) with a Ni substrate layer. The formation of NiCu alloys and the cauliflower-like structure with abundant catalytic active sites enhances the conductivity, reduces the internal resistance of charge transfer, improves the reaction kinetics, and thereby increases the AOR performance. The maximum current density of Ni@NiCu/CP electrode reaches 241.2 mA cm–2, which is at a relatively high level in the previously reported studies. Moreover, a membrane-free DAFC is constructed utilizing catalyst-free carbon paper as the cathode and Ni@NiCu/CP as the anode. It has an open-circuit voltage (OCV) of 1.3 V and a peak power density of 15.46 mW cm–2. The results indicate that this cost-effective alloy catalyst has good prospects for application in direct ammonia fuel cells.
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