催化作用
化学
电化学
介孔材料
多孔性
碳纤维
化学工程
电催化剂
氧还原反应
无机化学
电极
材料科学
有机化学
复合材料
物理化学
复合数
工程类
作者
Soo Hong Lee,Jiheon Kim,Dong Young Chung,Ji Mun Yoo,Hyeon Seok Lee,Min Jeong Kim,Bongjin Simon Mun,Soon Gu Kwon,Yung‐Eun Sung,Taeghwan Hyeon
摘要
The effect of porous structures on the electrocatalytic activity of N-doped carbon is studied by using electrochemical analysis techniques and the result is applied to synthesize highly active and stable Fe-N-C catalyst for oxygen reduction reaction (ORR). We developed synthetic procedures to prepare three types of N-doped carbon model catalysts that are designed for systematic comparison of the porous structures. The difference in their catalytic activity is investigated in relation to the surface area and the electrochemical parameters. We found that macro- and mesoporous structures contribute to different stages of the reaction kinetics. The catalytic activity is further enhanced by loading the optimized amount of Fe to prepare Fe-N-C catalyst. In both N-doped carbon and Fe-N-C catalysts, the hierarchical porous structure improved electrocatalytic performance in acidic and alkaline media. The optimized catalyst exhibits one of the best ORR performance in alkaline medium with excellent long-term stability in anion exchange membrane fuel cell and accelerated durability test. Our study establishes a basis for rationale design of the porous carbon structure for electrocatalytic applications.
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