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Updated: Sep 11, 2025

Development and Validation of Chromium Getters for Solid Oxide Fuel Cell Power Systems
Published on: May 26, 2019
Chromium-Induced Interfacial Deactivation in SOFCs under Practical Conditions: Mechanistic Insights into Chromium
Min Li1, Xiang Wang1, Haoran Wang1
1Research Center of Solid Oxide Fuel Cell, China University of Mining and Technology-Beijing, Beijing 100083, China.
None:
Chromium (Cr)-induced interfacial deactivation remains a critical challenge to the long-term stability of solid oxide fuel cells (SOFCs), particularly when using La0.6Sr0.4Co0.2Fe0.8O3-δ (LSCF) as the cathode. In this work, the degradation behavior of SOFCs is systematically studied by varying the Cr sources (Cr2O3 powder and SUS430 alloy) and current densities (0.2 and 0.5 A cm-2). The correlation between Cr volatilization rate and performance loss confirms that using Cr2O3 powder as the Cr source accelerates deposition and leads to more severe cathode degradation. Thus, Cr2O3 powder is suitable for accelerated aging tests. The results reveal that Cr deposition primarily and significantly suppresses the oxygen surface exchange and bulk diffusion processes in the LSCF cathode. Furthermore, SEM-EDS mapping confirms enhanced Cr and Sr migration toward the electrolyte under a high current load. These findings demonstrate the critical roles of Cr source volatility and electrochemical polarization in Cr-induced degradation, providing valuable mechanistic insight for developing Cr-tolerant electrodes and optimizing SOFC operation.

