A highly active and carbon-tolerant anode decorated with in situ grown cobalt nano-catalyst for intermediate-temperature solid oxide fuel cells

Chunming Xu, Wang Sun*, Rongzheng Ren, Xiaoxia Yang, Minjian Ma, Jinshuo Qiao, Zhenhua Wang, Shuying Zhen, Kening Sun

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

78 Citations (Scopus)

Abstract

The development of high-catalytic-activity anode materials with carbon tolerance is an important research undertaking for the successful application of intermediate-temperature solid oxide fuel cells (IT-SOFCs). Herein, a novel anode material capable of in-situ exsolution of nanoparticles, Sr1.95Fe1.4Co0.1Mo0.5O6-δ (SFCoM), is designed and prepared from perovskite by a strategy combining A-site defect regulation and B-site doping. The electrocatalytic activity is greatly enhanced by the in-situ exsolved Co nanoparticle. The maximum power densities of a single cell with Co@SFCoM as the anode are 1.01 and 0.79 W cm−2 when H2 and C3H8, respectively, are used as the fuel at 750 °C. In addition, the Co@SFCoM anode exhibits excellent carbon-deposition resistance due to the synergistic effect of the Co nanoparticles and perovskite backbone. When C3H8 is used as the fuel, the anode material long-term operational stability over 200 h without performance degradation. Thus, our methodology represents a promising material design strategy for developing high-performance IT-SOFC anodes.

Original languageEnglish
Article number119553
JournalApplied Catalysis B: Environmental
Volume282
DOIs
Publication statusPublished - Mar 2021

Keywords

  • Carbon-tolerant
  • In-situ exsolution
  • Perovskite anode
  • Solid oxide fuel cells

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Xu, C., Sun, W., Ren, R., Yang, X., Ma, M., Qiao, J., Wang, Z., Zhen, S., & Sun, K. (2021). A highly active and carbon-tolerant anode decorated with in situ grown cobalt nano-catalyst for intermediate-temperature solid oxide fuel cells. Applied Catalysis B: Environmental, 282, Article 119553. https://doi.org/10.1016/j.apcatb.2020.119553