High-performance LaNi0.6Fe0.4O3-8-La0.45Ce0.55O2-8 nanoparticles co-loaded oxygen electrode for solid oxide steam electrolysis

CERAMICS INTERNATIONAL(2023)

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摘要
Hydrogen production through solid oxide electrolysis cells (SOECs) driven by renewable energy has attracted a lot of attention. Nevertheless, the poor performance of the oxygen electrode is a bottleneck in the implementation of SOECs. This work reports a high-performance LaNi0.6Fe0.4O3-8-La0.45Ce0.55O2-8 (LNF-LDC) nanoparticles co-loaded (La(0.8S)r(0.2))(0.9)MnO3-8-Y0.15Zr0.85O2-8 (LSM-YSZ) oxygen electrode. Firstly, the co-synthesized LNF-LDC nano-composite is characterized by XRD, SEM, H-2-TPR and O-2-TPD techniques. Compared with individually synthesized LaNi0.6Fe0.4O3-8 (LNF), the co-synthesized LNF-LDC nanoparticles have a larger amount of oxygen vacancy and higher oxygen mobility due to a strong synergistic effect. Secondly, the LNF-LDC nanoparticles co-loaded oxygen electrode exhibits a higher electrochemical performance than the single LNF loaded LSM-YSZ electrode. Under 800 ? and 50% A.H., the cell with LSM-YSZ@LNF-LDC-4 mu L delivers -1.18 A cm(-2) at 1.3 V, which is 2.03 times higher than the cell with LSM-YSZ@LNF-4 mu L. Therefore, co-loading LNF-LDC is a promising method to develop a highly efficient oxygen electrode for solid oxide steam electrolysis.
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关键词
Hydrogen production,Solid oxide electrolysis cell,Nanostructure,Co-loaded oxygen electrode
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