Structural characteristics, sinterability and electrical conductivity of Ba-site non-stoichiometric BaxCe0.50Zr0.40Y0.10O3−δ
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference33 articles.
1. Technological challenges in the application of proton conducting ceramics
2. Proton Conduction in Sintered Oxides Based on BaCeO3
3. The influence of cation non-stoichiometry on the properties of undoped and gadolinia-doped barium cerate
4. The Effects of Dopants and A:B Site Nonstoichiometry on Properties of Perovskite‐Type Proton Conductors
5. Defect chemistry and transport properties of BaxCe0.85M0.15O3-δ
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1. New Understanding and Improvement in Sintering Behavior of Cerium‐Rich Perovskite‐Type Protonic Electrolytes;Advanced Functional Materials;2024-04-09
2. Investigation on properties of BaZr0.6Hf0.2Y0.2O3-δ with sintering aids (ZnO, NiO, Li2O) and its application for hydrogen permeation;International Journal of Hydrogen Energy;2022-10
3. Improving the physical properties of polycrystalline-deficient Pr0.8Sr0.2−x□xMnO3 (0 ≤ x ≤ 0.2) compounds for electronic devices;Journal of Materials Science: Materials in Electronics;2022-07-18
4. Influence of rare-earth doping on the phase composition, sinterability, chemical stability and conductivity of BaHf0.8Ln0.2O3-δ (Ln = Yb, Y, Dy, Gd) proton conductors;International Journal of Hydrogen Energy;2021-10
5. Novel Perovskite Semiconductor Based on Co/Fe-Codoped LBZY (La0.5Ba0.5 Co0.2Fe0.2Zr0.3Y0.3O3−δ) as an Electrolyte in Ceramic Fuel Cells;ACS Applied Energy Materials;2021-05-19
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