The development of new chemically resistant anodes for protonic ceramic fuel cells (PCFCs) is urgently required to avoid the costly deep hydrogen purification method. Ba(0.95)Ca(0.05)Ce(0.9)Y(0.1)O(3-)(δ) (5CBCY), which is more chemically resistant than BaCaCe(0.9)Y(0.1)O(3)(-)(δ), was here tested as a component of a composite NiO-5CBCY anode material. A preparation slurry comprising 5CBCY(,) NiO, graphite, and an organic medium was tape cast, sintered and subjected to thermal treatment in 10 vol.% H(2) in Ar at 700 °C. Differential thermal analysis, thermogravimetry, quadrupole mass spectrometry, X-ray diffraction analysis, scanning electron microscopy, the AC four-probe method and electrochemical impedance spectroscopy were used for the investigation. The electrical conductivity of the Ni-5CBCY in H(2)-Ar at 700 °C was 1.1 S/cm. In the same gas atmosphere but with an additional 5 vol.% CO(2), it was slightly lower, at 0.8 S/cm. The Ni-5CBCY cermet exhibited repeatable electrical conductivity values during Ni-to-NiO oxidation cycles and NiO-to-Ni reduction in the 5CBCY matrix, making it sufficient for preliminary testing in PCFCs.
NiO-Ba(0.95)Ca(0.05)Ce(0.9)Y(0.1)O(3-)(δ) as a Modified Anode Material Fabricated by the Tape Casting Method.
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作者:Dudek Magdalena, Lis BartÅomiej, Kluczowski Ryszard, Krauz Mariusz, ZiÄ bka Magdalena, Gajek Marcin, Rapacz-Kmita Alicja, MosiaÅek MichaÅ, Dudek Piotr, Majda Dorota, Raźniak Andrzej
| 期刊: | Materials | 影响因子: | 3.200 |
| 时间: | 2022 | 起止号: | 2022 Mar 28; 15(7):2489 |
| doi: | 10.3390/ma15072489 | ||
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