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Modelling of point defect migration in proton conducting ceramics

โœ Scribed by J.B. Condon; T. Schober


Publisher
Elsevier Science
Year
1997
Tongue
English
Weight
519 KB
Volume
97
Category
Article
ISSN
0167-2738

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โœฆ Synopsis


Numerical simulations of the diffusion of protons, oxygen vacancies, electrons and holes in SrCe Yb O were 0.95 0.05 32a performed for conditions where external fluxes were not allowed and where they were allowed. With no external fluxes and the application of an electrical field, the concentration profiles approached that expected from the Gouy-Chapman / Debye-แธฆ uckel theories. When the profiles were sharper than the Debye length, the particle migrations are not linked. However, for longer times their migrations became linked due to the generation of large electrostatic fields. This yielded the answer expected from chemical diffusion. Similar analysis resulted from cases with enhanced surface concentrations with no external fields. The approach to these conditions, however, was not as expected from simplified equations, and independent diffusion can occur for a time much longer than expected.


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