Huge impact of compressive strain on phase transition temperatures in epitaxial ferroelectric KxNa1-xNbO3 thin films

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Date
2019
Volume
114
Issue
23
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Publisher
Melville, NY : American Inst. of Physics
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Abstract

We present a study in which ferroelectric phase transition temperatures in epitaxial KxNa1-xNbO3 films are altered systematically by choosing different (110)-oriented rare-earth scandate substrates and by variation of the potassium to sodium ratio. Our results prove the capability to continuously shift the ferroelectric-to-ferroelectric transition from the monoclinic MC to orthorhombic c-phase by about 400 °C via the application of anisotropic compressive strain. The phase transition was investigated in detail by monitoring the temperature dependence of ferroelectric domain patterns using piezoresponse force microscopy and upon analyzing structural changes by means of high resolution X-ray diffraction including X-ray reciprocal space mapping. Moreover, the temperature evolution of the effective piezoelectric coefficient d33,f was determined using double beam laser interferometry, which exhibits a significant dependence on the particular ferroelectric phase. © 2019 Author(s).

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Keywords
Ferroelectric films, Ferroelectric materials, Ferroelectricity, Laser interferometry, Niobium compounds, Piezoelectricity, Rare earths, Scanning probe microscopy, Sodium compounds, Temperature distribution, X ray diffraction analysis, Epitaxial ferroelectric, Ferroelectric phase transition temperatures, Ferroelectric transition, High resolution X ray diffraction, Monitoring the temperatures, Piezoelectric coefficient, Piezoresponse force microscopy, X-ray reciprocal space mapping, Potassium compounds
Citation
Von Helden, L., Bogula, L., Janolin, P.-E., Hanke, M., Breuer, T., Schmidbauer, M., et al. (2019). Huge impact of compressive strain on phase transition temperatures in epitaxial ferroelectric KxNa1-xNbO3 thin films. 114(23). https://doi.org//10.1063/1.5094405
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CC BY 4.0 Unported