首页> 外文期刊>Ferroelectrics: Letters Section >THE EFFECT OF REPEATED SOL INFILTRATIONS ON THE MICROSTRUCTURE AND ELECTRICAL PROPERTIES OF PZT COMPOSITE SOL-GEL FILMS
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THE EFFECT OF REPEATED SOL INFILTRATIONS ON THE MICROSTRUCTURE AND ELECTRICAL PROPERTIES OF PZT COMPOSITE SOL-GEL FILMS

机译:反复进行溶胶渗透对PZT复合溶胶-凝胶薄膜的微观结构和电学性能的影响

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摘要

PZT films in excess of 20 mu m thick can readily be fabricated by repeated deposition of a powder/sol-gel slurry. The resultant films often contain a considerable level of porosity which has a detrimental effect on the material properties. A technique for increasing the density of such films through the use of controlled heat treatments and sol infiltration is presented. It is shown that with increased levels of sol infiltration the density and the relative permittivity of the films is increased. Measurements of the piezoelectric properties indicate that sol infiltration can lead to an increase in d_(33) and e_(31,f). A sample with approximately 10 percent closed porosity was obtained following 4 infiltration steps per layer. This resulted in a maximum relative permittivity of approximately 80 percent of the quoted bulk value. Using a poling condition of 5mins at 200 deg C a maximum value d_(33) of 70p C/N was obtained. Examination of cross-sections of the films produced shows that for intermediate levels of sol infiltration (typically between 1 and 3) a density gradient is obtained with higher densities observed nearer to the base of the film. It is postulated that the observed density gradient is a result of continued infiltration from the upper layers when further layers of slurry are deposited. The effects of changing the number of infiltration steps upon the film structures and electrical properties will be discussed.
机译:通过重复沉积粉末/溶胶-凝胶浆料,可以容易地制造出厚度超过20微米的PZT膜。所得膜通常包含相当水平的孔隙率,这对材料性能具有有害影响。提出了一种通过使用受控的热处理和溶胶渗透来增加这种膜的密度的技术。结果表明,随着溶胶渗透水平的提高,薄膜的密度和相对介电常数也随之提高。压电性能的测量结果表明,溶胶的渗透可导致d_(33)和e_(31,f)的增加。每层经过4个渗透步骤后,获得的孔隙率约为10%的样品。这导致最大相对介电常数约为所引用体积值的80%。在200摄氏度下使用5分钟的极化条件,获得的最大值d_(33)为70p C / N。所产生的膜的横截面的检查表明,对于中等水平的溶胶渗透(通常在1至3之间),获得了密度梯度,并且在靠近膜的底部观察到更高的密度。假定观察到的密度梯度是当沉积更多层浆料时从上层持续渗透的结果。将讨论改变渗透步骤数对薄膜结构和电性能的影响。

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