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Computer Simulations of Thermal Expansion in Lanthanum-Based Perovskites

โœ Scribed by R.E. Williford; J.W. Stevenson; S.-Y. Chou; L.R. Pederson


Publisher
Elsevier Science
Year
2001
Tongue
English
Weight
137 KB
Volume
156
Category
Article
ISSN
0022-4596

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โœฆ Synopsis


Di4erential thermal expansion is important when two strongly bonded ceramics are subjected to high temperatures, as in solid oxide fuel cells. Free energy minimization (EM) and molecular dynamics (MD) techniques were used to simulate the thermal expansion of the perovskites (La, Ca)CrO 3 and (La, Sr) (Co, Fe)O 3 on the atomistic scale. This paper explores the use of empirical partial charge interatomic potentials to represent the partially covalent bonding in these materials. The EM simulations underpredicted the thermal expansion coe7cients (CTEs) by up to 26% due to limitations in the potentials. The MD simulations predicted the CTEs to within 17% of experimental data for (La,Ca)CrO 3 . MD predictions of the CTEs for (La,Sr)(Co,Fe)O 3 were signi5cantly lower than the experimental data due to the approximate nature of the Co 4ุ‰ and Fe 4ุ‰ interatomic potentials. Improvements in these results are possible if more extensive databases become available for re5ning the potentials and e4ective charges.


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