Facile Construction of Nanostructured Cermet Anodes with Strong Metal–Oxide Interaction for Efficient and Durable Solid Oxide Fuel Cells

Author:

Wang Baisen1,Yue Zhongwei1ORCID,Chen Zhiyi1,Zhang Yanxiang2,Fang Huihuang3,Ai Na4,Wang Ruijing5,Yang Fan5,Guan Chengzhi6,Jiang San Ping78,Shao Zongping9,Luo Yu3,Chen Kongfa1ORCID

Affiliation:

1. College of Materials Science and Engineering Fuzhou University Fuzhou Fujian 350108 P. R. China

2. National Key Laboratory for Precision Hot Processing of Metals MIIT Key Laboratory of Advanced Structure‐Function Integrated Materials and Green Manufacturing Technology School of Materials Science and Engineering Harbin Institute of Technology Harbin 150001 P. R. China

3. National Engineering Research Center of Chemical Fertilizer Catalyst (NERC‐CFC) College of Chemical Engineering Fuzhou University Fuzhou Fujian 350002 P. R. China

4. Fujian College Association Instrumental Analysis Center Fuzhou University Fuzhou Fujian 350108 P. R. China

5. School of Physical Science and Technology Shanghai Tech University Shanghai 201210 P. R. China

6. Key Laboratory of Interfacial Physics and Technology Shanghai Institute of Applied Physics, Chinese Academy of Sciences Shanghai 201800 P. R. China

7. Foshan Xianhu Laboratory of the Advanced Energy Science and Technology Guangdong Laboratory Foshan 528216 P. R. China

8. WA School of Mines: Minerals, Energy, and Chemical Engineering Curtin University Perth WA 6102 Australia

9. State Key Laboratory of Materials‑Oriented Chemical Engineering College of Chemical Engineering Nanjing Tech University Nanjing 211816 P. R. China

Abstract

AbstractNanostructured anodes generate massive reaction sites to oxidize fuels in solid oxide fuel cells (SOFCs); however, the nonexistence of a practically viable approach for the construction of nanostructures and the retention of these nanostructures under the harsh operating conditions of SOFCs poses a significant challenge. Herein, a simple procedure is reported for the construction of a nanostructured Ni–Gd‐doped CeO2 anode based on the direct assembly of pre‐formed nanocomposite powder with strong metal–oxide interaction. The directly assembled anode forms heterointerfaces with the electrolyte owing to the electrochemical polarization current and exhibits excellent structural robustness against thermal ripening. An electrolyte‐supported cell with the directly assembled anode produces a peak power density of 0.73 W cm−2 at 800 °C, while maintaining stability for 100 h, which is in contrast to the drastic degradation of the cermet anode prepared using the conventional method. These findings provide clarity on the design and construction of durable nanostructured anodes and other electrodes for SOFCs.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Fujian Province

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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