Grain-size effects in nanoscaled electrolyte and cathode thin films for solid oxide fuel cells (SOFC)

By: Material type: ArticleArticleLanguage: English Publication details: KIT Scientific Publishing 2009Description: 1 electronic resource (VIII, 155 p. p.)ISBN:
  • KSP/1000010126
  • 9783866443365
Subject(s): Online resources: Summary: Due to their high energy conversion efficiencies and low emissions, Solid Oxide Fuel Cells (SOFCs) show promise as a replacement for combustion-based electrical generators at all sizes. Further increase of SOFC efficiency can be achieved by microstructural optimization of the oxygen-ion conducting electrolyte and the mixed ionic-electronic conducting cathode. By application of nanoscaled thin films, the exceptionally high efficiency allows the realization of mobile SOFCs.
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Due to their high energy conversion efficiencies and low emissions, Solid Oxide Fuel Cells (SOFCs) show promise as a replacement for combustion-based electrical generators at all sizes. Further increase of SOFC efficiency can be achieved by microstructural optimization of the oxygen-ion conducting electrolyte and the mixed ionic-electronic conducting cathode. By application of nanoscaled thin films, the exceptionally high efficiency allows the realization of mobile SOFCs.

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