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Ionic conductivity, sintering and thermal expansion behaviors of mixed ion conductor BaZr0.1Ce0.7Y0.1Yb 0.1O3-δ prepared by ethylene diamine tetraacetic acid assisted glycine nitrate process

  • Xiaoliang Zhou
  • , Limin Liu
  • , Jiangman Zhen
  • , Shengcai Zhu
  • , Baowen Li
  • , Kening Sun*
  • , Peng Wang
  • *Corresponding author for this work
  • Harbin Institute of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

BaZr0.1Ce0.7Y0.1Yb0.1O 3-δ as a candidate electrolyte material is prepared by ethylene diamine tetraacetic acid assisted glycine-nitrate process. After calcining at 900 °C, the single-phase perovskite is obtained due to the better distribution of starting materials and the more feasible reaction kinetic conditions than solid state reaction method. The relative densities reach 96.8 and 98.4% respectively after sintering the pressed pellets at 1280 and 1400 °C for 10 h. In humidified oxygen the ionic conductivities are 0.015, 0.045, 0.101 and 0.207 S cm-1 at 500, 600, 700 and 800 °C, respectively. In air and humidified oxygen the activation energies for ionic conductivity are 66.1 and 68.9 kJ mol-1. In humidified hydrogen, however, different activation energies occur in low and high temperature ranges. The thermal expansion curve inflections at 500-800 °C with respect to possible phase changes are found. Zirconia aggregation possibly results in the higher activation energy and peculiar thermal expansion behavior. The results indicate the ethylene diamine tetraacetic acid assisted glycine-nitrate process is a very promising preparation method for solid oxide fuel cell practical application.

Original languageEnglish
Pages (from-to)5000-5006
Number of pages7
JournalJournal of Power Sources
Volume196
Issue number11
DOIs
Publication statusPublished - 1 Jun 2011
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy

Keywords

  • AC impedance
  • Doped barium cerate
  • Glycine-nitrate process
  • Mixed ion conductor
  • Solid oxide fuel cell

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