Structural, thermal stability and electrical conductivity of zirconium substituted barium cerate ceramics
Author:
Funder
Science and Engineering Research Board
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference58 articles.
1. Advanced materials for SOFC application: strategies for the development of highly conductive and stable solid oxide proton electrolytes;Medvedev;Prog. Mater. Sci.,2016
2. Profound understanding of effect of transition metal dopant, sintering temperature, and pO2 on the electrical and optical properties of proton conducting BaCe0.9Sm0.1O3-δ;Handal;Inorg. Chem.,2016
3. Structural and proton conductivity study of BaZr1−xRExO3-δ (RE = Dy, Sm) ceramics for intermediate temperature solid oxide fuel cell electrolyte;Satapathy;J. Solid State Electrochem.,2019
4. Perovskite solid electrolytes: structure, transport properties and fuel cell applications;Bonanos;J. Solid State Ion.,1995
5. Proton-conducting oxides;Kreuer;Annu. Rev. Mater. Res.,2003
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