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Effect of strain on the ferroelectric properties in epitaxial perovskite titanate thin films grown on ferromagnetic CoFe2O4 layers

机译:应变对在铁磁CoFe2O4层上生长的外延钙钛矿钛酸酯薄膜中铁电性能的影响

摘要

A BaTiO3/CoFe2O4 heterostructure was fabricated by laser molecular beam epitaxy. The effects of strain on the microstructures, domain morphologies and ferroelectric properties of BaTiO3 thin films were studied systematically. Ferroelectric properties in a 40-nm-thick BaTiO3 film were suppressed owing to a reduced tetragonality induced by the strain between BaTiO3 and the underlying CoFe2O4. For a 100-nm-thick film, BaTiO3 exhibits improved the ferroelectric properties with an out-of-plane polarization (2Pr) of 36.4 μC cm-2 and an electric coercivity field of 104 kV cm-1. The results show that the thickness of BaTiO3 can significantly affect the interfacial strain and hence the ferroelectric properties of the BaTiO3/CoFe2O4 heterostructure.
机译:利用激光分子束外延技术制备了BaTiO3 / CoFe2O4异质结构。系统地研究了应变对BaTiO3薄膜的微观结构,畴形貌和铁电性能的影响。由于BaTiO3和下面的CoFe2O4之间的应变引起的四方性降低,抑制了40nm厚的BaTiO3膜中的铁电性能。对于厚度为100 nm的薄膜,BaTiO3具有改善的铁电性能,其面外极化(2Pr)为36.4μCcm-2,矫顽力场为104 kV cm-1。结果表明,BaTiO3的厚度可以显着影响界面应变,从而影响BaTiO3 / CoFe2O4异质结构的铁电性能。

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