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Thickness Dependence of Ferroelectric and Optical Properties in Pb(Zr0.53Ti0.47)O3 Thin Films

机译:铁电和光学性质在Pb(Zr0.53Ti0.47)O3薄膜中的厚度依赖性

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摘要

As a promising functional material, ferroelectric Pb(ZrxTi1−x)O3 (PZT) are widely used in many optical and electronic devices. Remarkably, as the film thickness decreases, the materials’ properties deviate gradually from those of solid materials. In this work, multilayered PZT thin films with different thicknesses are fabricated by Sol-Gel technique. The thickness effect on its microstructure, ferroelectric, and optical properties has been studied. It is found that the surface quality and the crystalline structure vary with the film thickness. Moreover, the increasing film thickness results in a significant increase in remnant polarization, due to the interfacial layer effect. Meanwhile, the dielectric loss and tunability are strongly dependent on thickness. In terms of optical properties, the refractive index of PZT films increase with the increasing thickness, and the photorefractive effect are also influenced by the thickness, which could all be related to the film density and photovoltaic effect. Besides, the band gap decreases as the film thickness increases. This work is significant for the application of PZT thin film in optical and optoelectronic devices.
机译:作为有希望的功能性材料,铁电PB(ZrxTi1-X)O3(PZT)广泛用于许多光学和电子设备。值得注意的是,随着膜厚度降低,材料的性能逐渐偏离固体材料的物质。在这项工作中,通过溶胶 - 凝胶技术制造具有不同厚度的多层PZT薄膜。研究了对其微观结构,铁电和光学性质的厚度效应。发现表面质量和晶体结构随膜厚度而变化。此外,由于界面层效应,增加的膜厚度导致残余极化的显着增加。同时,介电损耗和可调性强烈依赖于厚度。在光学性质方面,PZT膜的折射率随着厚度的增加而增加,并且光反射效应也受到厚度的影响,这一切都与膜密度和光伏效应有关。此外,随着膜厚度的增加,带隙减小。这项工作对于在光学和光电器件中的应用PZT薄膜的应用很重要。

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