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May 9, 2026Small0 citations

Pore Structure Engineering in Solid Oxide Cell Electrodes: Formation Mechanisms, Characterization Techniques, and Performance Implications

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TWTengpeng WangJZJing ZhuBCBin Chen

Key Points

  • The aim is to explore how engineered pore structures in solid oxide cells affect performance and durability.
  • Reviewed various pore formation mechanisms and characterization techniques.
  • Analyzed the impact of different pore structures on energy conversion efficiency.
  • Discussed future directions in pore structure engineering.
  • Identified that porous electrode structures significantly enhance cell performance and durability.
  • Highlighted the importance of multifunctionalities such as reaction sites and gas transport.
  • Emphasized specific designs like functionally graded and finger-like pore structures to optimize function.

Abstract

Solid oxide cells (SOCs) have demonstrated efficient energy conversions between power and fuels through reversible operations and will play an important role in renewable energy utilization. The porous structure of electrodes greatly affects cell performance and durability due to multifunctionalities: reaction sites, gas transport, electronic and ionic conduction, as well as mechanical support for supporting electrodes. Therefore, extensive research efforts have been devoted to design and optimize the porous structure of the electrode to achieve enhanced performance and durability, such as a functionally graded porous structure, a finger-like pore structure, etc. Different from the existing literature reviews on SOCs focusing on new materials developments, this paper has reviewed the pore structure engineering, covering pore formation mechanisms, the characterization techniques of pore structure, and the effects of various pore engineering strategies on the performance and durability of SOCs. The direction of future pore structure engineering is discussed.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69fed0e2b9154b0b8287808dhttps://doi.org/10.1002/smll.73581
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