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Structural and Dielectric Properties of Dy-doped( Ba, Sr, Ca) TiO3 Thick Films

机译:Dy掺杂(Ba,Sr,Ca)TiO3厚膜的结构和介电性能

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摘要

Preparation and electrocatalytic activities of Pt-TiO2 nanotubes (Ba0.57Sr0.33Ca0.10)TiO3 powders, prepared by the sol-gel method, were doped MnCO3 as acceptor and Dy2O3 as donor. This powder was mixed with an organic vehicle and BSCT thick films were fabricated by the screen-printing techniques on alumina substrate. The structural and dielectric properties of BSCT thick films were investigated with variation of Dy2O3 amount. As a result of the differential thermal analysis (DTA), exothermic peak was observed at around 670℃ due to the formation of the polycrystalline perovskite phase. All the BSCT thick films showed the XRD patterns of a typical polycrystalline perovskite structure. The average grain size of BSCT thick films decreased with increasing amount of Dy2O3. The relative dielectric constant and dielectric loss of the BSCT thick film doped Dy2O3 0. 1mol% were 4637.4 and 1.6% at 1kHz, respectively.
机译:以溶胶-凝胶法制备的Pt-TiO2纳米管(Ba0.57Sr0.33Ca0.10)TiO3粉末的制备及其电催化活性,掺杂MnCO3作为受体,Dy2O3作为施主。将该粉末与有机载体混合,并通过丝网印刷技术在氧化铝基底上制备BSCT厚膜。研究了Dy2O3含量变化对BSCT厚膜结构和介电性能的影响。差热分析(​​DTA)的结果是,由于多晶钙钛矿相的形成,在670℃附近观察到放热峰。所有的BSCT厚膜都显示出典型的多晶钙钛矿结构的XRD图。随着Dy2O3含量的增加,BSCT厚膜的平均晶粒尺寸减小。掺杂0. 1mol%的BSCT厚膜的Dy2O3的相对介电常数和介电损耗在1kHz时分别为4637.4和1.6%。

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