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The ac impedance response of the physical interface between yttria-stabilized zirconia and YBa{sub 2}Cu{sub 3}O{sub 7{minus}x}

Journal Article · · Journal of the Electrochemical Society
DOI:https://doi.org/10.1149/1.2050068· OSTI ID:110126
; ;  [1]
  1. Univ. of Aberdeen (United Kingdom). Dept. of Chemistry

Composite electrochemical cells incorporating press-contact pellets of yttria-stabilized zirconia (YSZ), electronically blocking electrodes, and YBa{sub 2}Cu{sub 3}O{sub 7{minus}x} (YBCO) were investigated by ac impedance spectroscopy. An additional element, not attributable to either of the individual components, was observed in the impedance spectrum of the composite cell. Although the capacitance associated with the additional element appeared to indicate a bulk response, the capacitance was found to be invariant with dimensions of either the YBCO or YSZ components. A similar additional element was observed when YBCO was replaced by other electronically conducting materials, including gold foil. These results point clearly to an interfacial impedance whose characteristics are governed largely by the YSZ; the extremely low capacitance value arises from a very low effective contact area due to surface roughness. The authors found no features in the impedance spectrum which could be attributed to oxide ion conduction in YBCO. In the assignment of impedance spectra to the components of a heterogeneous system, it is demonstrated that the use of relaxation frequencies and their temperature dependences provide a useful comparison, free from geometric factors, between samples with different origins or thermal histories. As well as having important implications for the fabrication of superconducting YBCO, the occurrence of mixed conduction provides the possibility of utilizing YBCO as an oxidation catalyst, oxygen sensor, or electrode in solid-state electrochemical devices such as solid oxide fuel cells.

Sponsoring Organization:
USDOE
OSTI ID:
110126
Journal Information:
Journal of the Electrochemical Society, Journal Name: Journal of the Electrochemical Society Journal Issue: 8 Vol. 142; ISSN JESOAN; ISSN 0013-4651
Country of Publication:
United States
Language:
English

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