4.6 Article

Robust redox-reversible perovskite type steam electrolyser electrode decorated with in situ exsolved metallic nanoparticles

期刊

JOURNAL OF MATERIALS CHEMISTRY A
卷 8, 期 2, 页码 582-591

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/c9ta06309a

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资金

  1. National Natural Science Foundation of China [51602228, 51502207, 21673062, 51402066]
  2. Natural Science Foundation of Jiangsu Province of China [BK20160380]
  3. Natural Science Foundation of Hubei Province of China [2016CFB243, 2017CFB655]
  4. China Postdoctoral Science Foundation [2016M590712, 2017T100575]
  5. U.S. National Science Foundation [DMR-1832809]

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Redox stabilities of the hydrogen electrode with in situ exsolved Fe-Ni nanoparticles from Sr2Fe1.4Ni0.1Mo0.5O6-delta (SFMNi) perovskite are studied by analyzing the evolution of the phase composition and morphology during the redox cycles. It is found that certain amount of the exsolved nanoparticles have been oxidized to the transition metal oxide (Ni,Fe)O instead of reincorporating into the parent perovskite lattice upon re-oxidizing at 800 degrees C in air. However, the (Ni,Fe)O secondary phases show no adverse effect on the subsequent reduction treatment. The redox reversibility mechanism is explained by the regular-solution model. The electrodes are almost fully recovered in the reducing atmosphere, and the symmetrical cells measured under 9.7% H-2-3% H2O-87.3% N-2 conditions show a stable specific area polarization resistance of around 1.93 Omega cm(2) at 800 degrees C during 13 redox cycles. Single cells using the Ni-Fe nanoparticles structured electrode exhibit a stable electrode polarization resistance of about 0.598 Omega cm(2) at 800 degrees C under open circuit voltage conditions and a steady electrolysis current density of about -653 mA cm(-2) at 1.5 V during the steam electrolysis process over 5 redox cycles. These results indicate that the SFMNi material is a very promising electrode candidate for steam electrolysis application with robust redox reversibility.

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