Strain relaxation and oxygen superstructure modulation in epitaxial Sr4Fe6O13±δ films
Author:
Publisher
AIP Publishing
Subject
Physics and Astronomy (miscellaneous)
Link
http://aip.scitation.org/doi/pdf/10.1063/1.1886264
Reference21 articles.
1. Doubling the critical temperature of La1.9Sr0.1CuO4 using epitaxial strain
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3. Effects of strain on the dielectric properties of tunable dielectric SrTiO3 thin films
4. Domain configurations due to multiple misfit relaxation mechanisms in epitaxial ferroelectric thin films. I. Theory
5. Misfit strain relaxation by dislocations in SrRuO3/SrTiO3 (001) heteroepitaxy
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1. Realization of high-quality Sr4Fe6O13 epitaxial film and its phase competition with SrFeO2.5;Ceramics International;2023-03
2. Defect Structure, Charge Transport Mechanisms, and Strain Effects in Sr4Fe6O12+δ Epitaxial Thin Films;Chemistry of Materials;2010-01-08
3. Unusual Strain Accommodation and Conductivity Enhancement by Structure Modulation Variations in Sr4Fe6O12+δ Epitaxial Films;Advanced Functional Materials;2008-03-11
4. Vacancies ordering in La3+1-xBa2+xFeO3-δperovskites;Zeitschrift für Kristallographie Supplements;2007-11
5. Thickness-dependent transport properties of Sr4Fe6O13 epitaxial thin films;Solid State Ionics;2006-02
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