Structure, oxygen transport properties and electrode performance of Ca-substituted Nd 2 NiO 4

E. Yu Pikalova, V. A. Sadykov, E. A. Filonova, N. F. Eremeev, E. M. Sadovskaya, S. M. Pikalov, N. M. Bogdanovich, J. G. Lyagaeva, A. A. Kolchugin, L. B. Vedmid, A. V. Ishchenko, V. B. Goncharov

Research output: Contribution to journalArticlepeer-review

15 Citations (Scopus)

Abstract

Mixed ionic-electronic conductors are of great interest for development of oxygen separation membranes and air electrodes for intermediate temperature solid oxide fuel and electrolysis cells. This work presents the results of studying the structure, transport properties and oxygen mobility in Nd 2−x Ca x NiO 4 oxides (x = 0–0.5), synthesized via a solution-assisted solid state reaction method, in correlation with the over-stoichiometric oxygen content. High oxygen mobility was demonstrated in the low-doped materials (D O ~ 10 −10 –10 −8 cm 2 /s at 700 °C) which corresponded to the ionic (oxygen) conductivity values ~ 10 −4 –10 −2 S/cm, comparable to those for widely used solid electrolytes and state-of-the-art cathode materials. The polarization resistance of the Nd 2−x Ca x NiO 4+δ electrodes in contact with Ce 0.8 Sm 0.2 O 1.9 electrolyte was shown to have non-linear dependency on Ca content, which may be caused by the influence of two opposite tendencies for decreasing over-stoichiometric oxygen and oxygen diffusivity and increasing the total conductivity with Ca doping. High electrical and electrochemical characteristics along with oxygen mobility mean the materials developed display high potential for electrochemical and catalytic applications.

Original languageEnglish
Pages (from-to)53-60
Number of pages8
JournalSolid State Ionics
Volume335
DOIs
Publication statusPublished - 1 Jul 2019

Keywords

  • Ca doping
  • Cathode
  • Electrochemical behavior
  • Isotope exchange
  • Nd NiO
  • SOFC
  • Transport properties
  • ELECTROCHEMICAL PROPERTIES
  • SURFACE EXCHANGE
  • LA2NIO4+DELTA
  • CATHODE MATERIALS
  • Nd2NiO4
  • IMPEDANCE
  • DIFFUSION
  • OXIDES
  • LANTHANUM
  • MICROSTRUCTURE
  • PERMEATION

Fingerprint

Dive into the research topics of 'Structure, oxygen transport properties and electrode performance of Ca-substituted Nd <sub>2</sub> NiO <sub>4</sub>'. Together they form a unique fingerprint.

Cite this