Catalytically Active Carbon for Oxygen Reduction Reaction in Energy Conversion: Recent Advances and Future Perspectives

Author:

Liu Shuling1,Wang Ao2,Liu Yanyan123ORCID,Zhou Wenshu2,Wen Hao1,Zhang Huanhuan1,Sun Kang2,Li Shuqi3,Zhou Jingjing3,Wang Yongfeng4ORCID,Jiang Jianchun2,Li Baojun1ORCID

Affiliation:

1. College of Chemistry Zhengzhou University 100 Science Road Zhengzhou 450001 P. R. China

2. Institute of Chemical Industry of Forest Products CAF National Engineering Lab for Biomass Chemical Utilization Key and Open Lab on Forest Chemical Engineering SFA 16 Suojinwucun Nanjing 210042 P. R. China

3. College of Science Henan Agricultural University 95 Wenhua Road Zhengzhou 450002 P. R. China

4. Center for Carbon‐based Electronics and Key Laboratory for the Physics and Chemistry of Nanodevices School of Electronics Peking University Beijing 100871 P. R. China

Abstract

AbstractThe shortage and unevenness of fossil energy sources are affecting the development and progress of human civilization. The technology of efficiently converting material resources into energy for utilization and storage is attracting the attention of researchers. Environmentally friendly biomass materials are a treasure to drive the development of new‐generation energy sources. Electrochemical theory is used to efficiently convert the chemical energy of chemical substances into electrical energy. In recent years, significant progress has been made in the development of green and economical electrocatalysts for oxygen reduction reaction (ORR). Although many reviews have been reported around the application of biomass‐derived catalytically active carbon (CAC) catalysts in ORR, these reviews have only selected a single/partial topic (including synthesis and preparation of catalysts from different sources, structural optimization, or performance enhancement methods based on CAC catalysts, and application of biomass‐derived CACs) for discussion. There is no review that systematically addresses the latest progress in the synthesis, performance enhancement, and applications related to biomass‐derived CAC‐based oxygen reduction electrocatalysts synchronously. This review fills the gap by providing a timely and comprehensive review and summary from the following sections: the exposition of the basic catalytic principles of ORR, the summary of the chemical composition and structural properties of various types of biomass, the analysis of traditional and the latest popular biomass‐derived CAC synthesis methods and optimization strategies, and the summary of the practical applications of biomass‐derived CAC‐based oxidative reduction electrocatalysts. This review provides a comprehensive summary of the latest advances to provide research directions and design ideas for the development of catalyst synthesis/optimization and contributes to the industrialization of biomass‐derived CAC electrocatalysis and electric energy storage.

Funder

National Science Fund for Distinguished Young Scholars

National Natural Science Foundation of China

Publisher

Wiley

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