MEMS-based thin-film solid-oxide fuel cells

  • An, Jihwan
  • Shim, Joon Hyung
  • Kim, Young-Beom
  • Park, Joong Sun
  • Lee, Wonyoung
  • 외 2명
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초록

Thin-film solid-oxide fuel cells (TF-SOFCs) fabricated using microelectromechanical systems (MEMS) processing techniques not only help lower the cell operating temperature but also provide a convenient platform for studying cathodic losses. Utilizing these platforms, cathode kinetics can be enhanced dramatically by engineering the microstructure of the cathode/electrolyte interface by increasing the surface grain-boundary density. Nanoscale secondary ion mass spectrometry and high-resolution transmission electron microscopy studies have shown that oxygen exchange at electrolyte surface grain boundaries is facilitated by a high population of oxide-ion vacancies segregating preferentially to the grain boundaries. Furthermore, three-dimensional structuring of TF-SOFCs enabled by various lithography methods also helps increase the active surface area and enhance the surface exchange reaction. Although their practical prospects are yet to be verified, MEMS-based TF-SOFC platforms hold the potential to provide high-performance for low-temperature SOFC applications.

키워드

atomic layer depositionenergy generationGrain boundariesnanostructuresecondary ion mass spectroscopy (SIMS)transmission electron microscopy (TEM)YTTRIA-STABILIZED ZIRCONIAATOMIC LAYER DEPOSITIONDOPED CERIA INTERLAYERSOXYGEN REDUCTIONBARIUM ZIRCONATEGRAIN-BOUNDARYELECTROLYTEPERFORMANCEMEMBRANESCATHODES
제목
MEMS-based thin-film solid-oxide fuel cells
저자
An, JihwanShim, Joon HyungKim, Young-BeomPark, Joong SunLee, WonyoungGuer, Turgut M.Prinz, Fritz B.
DOI
10.1557/mrs.2014.171
발행일
2014-09
유형
Article
저널명
MRS Bulletin
39
9
페이지
798 ~ 804