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- W4225164084 abstract "The hydrogen oxidation reaction on Sr2Fe1.5Mo0.5O6−δ + Ce0.8Sm0.2O2−δ (SFM-SDC), Sr2Fe1.5Mo0.5O6−δ + BaCe0.89Gd0.1Cu0.01O3−δ (SFM-BCGC) and Sr1.95Fe1.4Ni0.1Mo0.5O6−δ + BaCe0.89Gd0.1Cu0.01O3−δ (SFNM-BCGC) composite electrodes in contact with BaCeO3-based proton-conducting electrolytes was studied for the first time. Despite the high electronic and oxygen-ionic conductivity in the SFM-SDC, its electrochemical performance was not satisfactory, while the presence of the proton-conducting phase and exsolved nickel particles on the SFNM-BCGC electrode increased the electrochemical activity about 3 to 5 times. In series SFM-SDC, SFM-BCGC, SFNM-BCGC the polarization resistance was about 1.06, 0.54, 0.37 Ohm cm2 at 800°C and 10.02, 3.55, 2.12 Ohm cm2 at 600°C in wet hydrogen. The presence of sufficient proton conductivity in the electrode is supposed to be crucial for the efficient performance of the anodes in contact with proton-conducting oxides." @default.
- W4225164084 created "2022-05-01" @default.
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- W4225164084 date "2022-04-29" @default.
- W4225164084 modified "2023-09-30" @default.
- W4225164084 title "Features of the electrochemical reaction of hydrogen oxidation on the composite <scp> SrFeO <sub>3</sub> </scp> ‐based anode for a protonic ceramic fuel cell" @default.
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- W4225164084 doi "https://doi.org/10.1002/er.8029" @default.
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