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Effect of misfit strain on the electrocaloric effect of polydomain epitaxial ferroelectric thin films 被引量:2

Effect of misfit strain on the electrocaloric effect of polydomain epitaxial ferroelectric thin films
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摘要 The effect of misfit strain on the electrocaloric effect in polydomain epitaxial BaTi03 thin films at room temper- ature is investigated using the Ginzburg^Landau Devonshire thermodynamic theory. Numerical calculations indicate that the misfit strain has a large impact on the ferroelectric polarization states and the electrocaloric effect. Most importantly, the electrocaloric effect in the polydomain ca1/ca2/ca1/ea2 phase is much larger than that in the mon- odomain c phase and the other polydomain phases. Consequently, a large electrocaloric effect can be obtained by carefully controlling the misfit strain, which may provide potential applications in refrigeration devices. The effect of misfit strain on the electrocaloric effect in polydomain epitaxial BaTi03 thin films at room temper- ature is investigated using the Ginzburg^Landau Devonshire thermodynamic theory. Numerical calculations indicate that the misfit strain has a large impact on the ferroelectric polarization states and the electrocaloric effect. Most importantly, the electrocaloric effect in the polydomain ca1/ca2/ca1/ea2 phase is much larger than that in the mon- odomain c phase and the other polydomain phases. Consequently, a large electrocaloric effect can be obtained by carefully controlling the misfit strain, which may provide potential applications in refrigeration devices.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2012年第9期489-494,共6页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China (Grant No. 10904053) the Jiangsu Provincial Natural Science Foundation for Colleges and Universities, China (Grant No. 09KJB140002) the Priority Academic Development Program of Jiangsu Higher Education Institutions Qing Lan Project, China
关键词 polydomain electrocaloric effect phase transition polydomain, electrocaloric effect, phase transition
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