Thin film (La0.7Sr0.3)0.95MnO 3-δ fabricated by pulsed laser deposition and its application as a solid oxide fuel cell cathode for low-temperature operation
- Authors
- Noh, H.-S.; Son, J.-W.; Lee, H.; Kim, H.-R.; Lee, J.-H.; Lee, H.-W.
- Issue Date
- 2010-01
- Citation
- Journal of the Korean Ceramic Society, v.47, no.1, pp.75 - 81
- Abstract
- The feasibility of using the thin film technology in utilizing lanthanum strontium manganite (LSM) for a solid oxide fuel cell (SOFC) cathode in a low-temperature regime is investigated in this study. Thin film LSM cathodes were fabricated using pulsed laser deposition (PLD) on anode-supported SOFCs with yttria-stabilized zirconia (YSZ) electrolytes. Although cells with a 1 μmthick LSM cathode showed poor low-temperature cell performance compared to that of a cell with a bulk-processed cathode due to the lack of a triple-phase boundary length, the cell with 200 nm-thick gadolinia-doped ceria (GDC) inserted between the LSM and YSZ showed enhanced performance and more stable operation characteristics in a comparison of a cell without a GDC layer. We postulate that the GDC layer likely improved the cathode adhesion, therefore contributing to the improvement of the cell performance instead of serving as an interfacial reaction buffer.
- Keywords
- Anode-supported SOFCs; Cell performance; Enhanced performance; Gadolinia doped ceria; Interfacial reactions; Lanthanum strontium manganite; Low temperatures; Low-temperature regime; Solid oxide; Stable operation; Thin film cathode; Thin-film technology; Triple phase boundary; Cerium compounds; Deposition; Lanthanum; Lanthanum alloys; Lanthanum oxides; Manganese oxide; Pulsed laser deposition; Solid oxide fuel cells (SOFC); Strontium; Thin films; Vapor deposition; Yttria stabilized zirconia; Zirconia; Pulsed lasers; Anode-supported SOFCs; Cell performance; Enhanced performance; Gadolinia doped ceria; Interfacial reactions; Lanthanum strontium manganite; Low temperatures; Low-temperature regime; Solid oxide; Stable operation; Thin film cathode; Thin-film technology; Triple phase boundary; Cerium compounds; Deposition; Lanthanum; Lanthanum alloys; Lanthanum oxides; Manganese oxide; Pulsed laser deposition; Solid oxide fuel cells (SOFC); Strontium; Thin films; Vapor deposition; Yttria stabilized zirconia; Zirconia; Pulsed lasers; Lanthanum strontium manganite (lsm); Pulsed laser deposition (pld); Solid oxide fuel cell(sofc); Thin film cathode
- ISSN
- 1229-7801
- URI
- https://pubs.kist.re.kr/handle/201004/131843
- DOI
- 10.4191/KCERS.2010.47.1.075
- Appears in Collections:
- KIST Article > 2010
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