Enhanced ionic conductivity in calcium doped ceria - Carbonate electrolyte: A composite effect

  • Ying Ma
  • , Xiaodi Wang
  • , Hassan Ahmed Khalifa
  • , Bin Zhu
  • , Mamoun Muhammed

Research output: Contribution to journalArticlepeer-review

41 Scopus citations

Abstract

Recently, ceria-based nanocomposites, as a proton and oxygen ion conductor, has been developed as promising electrolyte candidates for low-temperature solid oxide fuel cells (LTSOFCs). Up to now, samarium doped ceria (SDC) was studied as a main oxide for nanocomposite electrolyte; while calcium doped ceria (CDC) is considered as a good alternative from both material performance and economical aspects. Yet the conduction behavior of CDC-based composite has not been reported. In the present study, calcium doped ceria was prepared by oxalate co-precipitation method, and used for the fabrication of CDC/Na 2CO3 composite. The thermal decomposition process, structure and morphology of the samples were characterized by TGA, XRD, SEM, etc. The oxygen ion conductivity of single phase CDC sample was measured by electrochemical impedance spectroscopy (EIS), while the proton and oxygen ion conductivity of CDC/Na2CO3 nanocomposite sample were determined by four-probe d.c. measurements. The CDC/Na2CO3 samples show significantly enhanced overall ionic conductivity compared to that of single phase CDC samples, demonstrating pronounced composite effect. This confirms that the use of nanocomposite as electrolyte can effectively lower the operation temperature of SOFC due to improved ionic conductivity.

Original languageEnglish
Pages (from-to)19401-19406
Number of pages6
JournalInternational Journal of Hydrogen Energy
Volume37
Issue number24
DOIs
StatePublished - Dec 2012
Externally publishedYes

Keywords

  • Calcium doped ceria (CDC)
  • Nanocomposite electrolyte
  • Oxygen ion conductivity
  • Proton conductivity
  • Solid oxide fuel cells (SOFCs)

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