催化作用
电催化剂
纳米颗粒
氧气
材料科学
化学
化学工程
碳纤维
无机化学
氧还原反应
氧化还原
电化学
纳米技术
有机化学
物理化学
电极
复合数
工程类
复合材料
作者
Libing Hu,Weifeng Wei,Feng Yu,Huifang Yuan,Mincong Liu,Gang Wang,Banghua Peng,Bin Dai,Jianmin Ma
标识
DOI:10.1016/j.jechem.2019.01.018
摘要
Defect engineering has been used to develop low-cost and effective catalysts to boost oxygen reduction reactions. However, the development of catalysts that use metal cation vacancies as the active sites for oxygen reduction reaction is lacking. In this study, ZnS nanoparticles on N-doped carbon serve as an oxygen reduction reaction catalyst. These catalysts were prepared via a one-step method at 900 °C. Amazingly, the high-resolution transmission electron microscope image revealed obvious defects in the ZnS nanoparticles. These facilitated the catalyst synthesis, and the product displayed good electrocatalytic performance for the oxygen reduction reaction in an alkaline medium, including a lower onset potential, lower mid-wave potential, four electron transfer process, and better durability compared with 20 wt% Pt/C. More importantly, the density functional theory results indicated that using the Zn vacancies in the prepared catalyst as active sites required a lower reaction energy to produce OOH* from *OO toward oxygen reduction reaction. Therefore, the proposed catalyst with Zn vacancies can be used as a potential electrocatalyst and may be substitutes for Pt-based catalysts in fuel cells, given the novel catalyst's resulting performance.
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