催化作用
锌
退火(玻璃)
氧还原
化学
氧还原反应
质子化
氧气
铂金
无机化学
材料科学
有机化学
冶金
电化学
物理化学
离子
电极
作者
Jia Li,Siguo Chen,Na Yang,Mingming Deng,Shumaila Ibraheem,Jianghai Deng,Jing Li,Li Li,Zidong Wei
标识
DOI:10.1002/ange.201902109
摘要
Abstract Atomically dispersed Zn–N–C nanomaterials are promising platinum‐free catalysts for the oxygen reduction reaction (ORR). However, the fabrication of Zn–N–C catalysts with a high Zn loading remains a formidable challenge owing to the high volatility of the Zn precursor during high‐temperature annealing. Herein, we report that an atomically dispersed Zn–N–C catalyst with an ultrahigh Zn loading of 9.33 wt % could be successfully prepared by simply adopting a very low annealing rate of 1° min −1 . The Zn–N–C catalyst exhibited comparable ORR activity to that of Fe–N–C catalysts, and significantly better ORR stability than Fe–N–C catalysts in both acidic and alkaline media. Further experiments and DFT calculations demonstrated that the Zn–N–C catalyst was less susceptible to protonation than the corresponding Fe–N–C catalyst in an acidic medium. DFT calculations revealed that the Zn–N 4 structure is more electrochemically stable than the Fe–N 4 structure during the ORR process.
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