Cold plasma‐induced N, Cu‐doping on carbon paper for high‐active catalytic electrode preparation

Author:

Yue Xufeng12ORCID,Xiang Hongyu23,Zhang Peng12ORCID,Shu Song23,Zhao Yingxin12,Zhang Jiacheng12,Liu Jinwei12,Yu Deping12ORCID

Affiliation:

1. School of Mechanical Engineering Sichuan University Chengdu China

2. Yibin Research Institute Sichuan University Yibin China

3. College of Carbon Neutrality Future Technology Sichuan University Chengdu China

Abstract

AbstractCarbon paper is commonly used for catalytic electrode preparation because of its high conductivity, corrosion resistance, and stability. However, traditional electrode preparation methods are inappropriate for highly hydrophobic carbon paper. In this paper, a high‐activity carbon paper catalytic electrode was prepared using multistrategies cold plasma modification to create atomic structural defects, dope N and Cu elements, and introduce oxygen‐containing functional groups. Analyses show that the bombardment of high‐energy particles caused atomic structural defects. Nitrogen and copper entered the carbon paper through plasma‐induced chemical recombination and physical adsorption, reaching 5.26% and 3.83%, respectively. Ethanol‐based plasma introduced oxygen‐containing functional groups to improve hydrophilicity. Finally, the plasma‐prepared electrode exhibited a reduction efficiency of 87.69% in an electrocatalytic nitrate reduction reaction.

Publisher

Wiley

Subject

Polymers and Plastics,Condensed Matter Physics

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