Heterostructured Cu/CuO Nanoparticles Embedded within N-Doped Carbon Nanosheets for Efficient Oxygen Reduction Reaction

Author:

Xu Guoting1,Huang Jianfeng1,Li Xiaoyi1,Chen Qian1,Xie Yajie1,Liu Zhenting1,Kajiyoshi Koji2,Wu Lingling3,Cao Liyun1,Feng Liangliang1ORCID

Affiliation:

1. School of Materials Science & Engineering, International S&T Cooperation Foundation of Shaanxi Province, Shaanxi University of Science and Technology, Xi’an 710021, China

2. Research Laboratory of Hydrothermal Chemistry, Kochi University, Kochi 780-8520, Japan

3. School of Chemical Engineering and Technology, Xi’an Jiaotong University, Xi’an 710049, China

Abstract

The development of cost-effective and highly efficient oxygen reduction reaction (ORR) electrocatalysts is an essential component of renewable clean energy technologies, such as fuel cells and metal/air cells, but remains a huge and long-term challenge. Here, novel heterogeneous Cu/CuO nanoparticles embedded within N-doped carbon nanosheets (Cu/CuO@NC-900) are successfully synthesized by combining a facile hydrothermal route with a solid calcination technique. Benefitting from the electronic interaction between Cu and CuO, the generated abundant highly active Cu-Nx active sites and the high conductivity of the N-doped carbon nanosheets, the resulting Cu/CuO@NC-900 material shows superior ORR performance in alkaline media, exhibiting a high half-wave potential of ~0.868 V, and a robust stability and methanol tolerance, even outperforming commercial 20 wt% Pt/C. Our study opens up a new avenue for the rational design and fabrication of efficient and durable noble-metal-free Cu-based electrocatalysts for energy conversion and storage.

Funder

National Natural Science Foundation of China

Program for International S&T Cooperation Projects of Shaanxi Province

Publisher

MDPI AG

Subject

Physical and Theoretical Chemistry,Catalysis,General Environmental Science

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