Control of chemical composition of PZT thin films produced by ion-beam deposition from a multicomponent target

J. Hlubuček, David Vápenka, P. Horodyska, J. Václavík
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引用次数: 1

Abstract

Lead zirconate titanate (PZT) is widely used for its ferroelectric and piezoelectric properties, which are conditioned by perovskite structure. Crystallization into this desired phase is determined also by a proper stoichiometry, where the lead concentration is a crucial parameter. The crystallization process takes place during annealing under high temperatures, which is linked to heavy lead losses, so the lead has to be in excess. Therefore, this paper is devoted to the control of chemical composition of PZT thin films deposited via ion beam sputtering (IBS). A commonly used approach for IBS relies on employing a multicomponent target to obtain films with the same composition as that of the target. However, in the case of PZT it is favorable to have the ability to controllably change the chemical composition of thin films in order to acquire high perovskite content. Our study revealed that the determinative lead content in PZT layers prepared by simple and dual ion-beam deposition from a multicomponent target can be easily controlled by the power of primary ion source. At the same time, the composition is also dependent on the substrate temperature and the power of assistant ion source. Thin PZT films with more than 30 % lead excess were acquired from a stoichiometric multicomponent target (i.e. a target without any lead excess). We can therefore propose several possible sets of deposition parameters suitable for the PZT deposition via IBS to obtain high perovskite content.
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多组分靶离子束沉积PZT薄膜化学成分的控制
锆钛酸铅(PZT)因其铁电和压电性能而被广泛应用,这些性能是由钙钛矿结构决定的。结晶成所需的相也由适当的化学计量来决定,其中铅浓度是一个关键参数。结晶过程发生在高温退火过程中,这与铅的大量损失有关,因此铅必须过量。因此,本文研究了离子束溅射沉积PZT薄膜的化学成分控制。IBS的一种常用方法是采用多组分靶来获得与靶成分相同的膜。然而,对于PZT来说,为了获得高钙钛矿含量,有能力控制改变薄膜的化学成分是有利的。我们的研究表明,用简单的双离子束沉积法制备的PZT层中的铅含量可以很容易地通过一次离子源的功率来控制。同时,其组成还取决于衬底温度和辅助离子源的功率。从化学计量多组分靶(即没有任何铅过量的靶)中获得了超过30%铅过量的PZT薄膜。因此,我们可以提出几种可能的沉积参数集,适用于通过IBS沉积PZT以获得高钙钛矿含量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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