Title of article
Oxide ionic conductivity and microstructures of Sm- or La-doped CeO2-based systems
Author/Authors
Mori، نويسنده , , Toshiyuki and Drennan، نويسنده , , John and Lee، نويسنده , , Jong-Heun and Li، نويسنده , , Ji-Guang and Ikegami، نويسنده , , Takayasu، نويسنده ,
Issue Information
هفته نامه با شماره پیاپی سال 2002
Pages
6
From page
461
To page
466
Abstract
The concept of crystallographic index termed the effective index is suggested and applied to the design of ceria (CeO2)-based electrolytes to maximize oxide ionic conductivity. The suggested index considers the fluorite structure, and combines the expected oxygen vacancy level with the ionic radius mismatch between host and dopant cations. Using this approach, oxide ionic conductivity of Sm- or La-doped CeO2-based system has been optimized and tested under operating conditions of a solid oxide fuel cell. In the observation of microstructure in atomic scale, both Sm-doped CeO2 and La-doped CeO2 electrolytes had large micro-domains over 10 nm in the lattice. On the other hand, Sm or La and alkaline earth co-doped CeO2-based electrolytes with high effective index had small micro-domains around 1–3 nm in the microstructure. The large micro-domain would prevent oxide ion from passing through the lattice. Therefore, it is concluded that the improvement of ionic conductivity is reflected in changes of microstructure in atomic scale.
Keywords
Microstructure crystals (61.70) , Mixed conductivity (72.60) , Selected area electron diffraction pattern (61.14.L) , Crystalline solids (61.66) , Ionic conduction solids (66.30.D)
Journal title
Solid State Ionics
Serial Year
2002
Journal title
Solid State Ionics
Record number
1709242
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