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Influence of ZrO2 addition on the structure, thermal stability, and dielectric properties of ZnTiO3 ceramics

机译:ZrO2添加对ZnTiO3陶瓷的结构,热稳定性和介电性能的影响

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摘要

The zinc titanates doped with zirconium were synthesized by conventional solid-state reaction using metal oxides. X-ray diffractometry and differential scanning calorimetry analysis results indicated that the stable region of the hexagonal Zn(Zr-x Ti1-x )O-3 phase extended to a high temperature (above 945 degrees C). The c/a value decreased as the Zr concentrations increased, which may be caused by the Zr4+ addition resulting in a shorter distance between the center ion and its nearest neighbors of the octahedron, and the bonding force between the B-site ion and oxygen ion of ABO(3) perovskite-like structure becoming stronger. The dielectric properties exhibited a significant dependence on the sintering temperatures and the amount of ZrO2 addition. The dielectric constant decreased and Curie temperature (T-c) increased slightly with the increasing amounts of Zr ions. This is caused by the second phase of ZnZrO3 which was deposited at the grain boundaries and inhibited the grain growth. Furthermore, diffuse phase transition with a maximum permittivity at a transition temperature that is close to room temperature in Zn(Zr-x Ti1-x )O-3 was observed.
机译:用金属氧化物通过常规的固态反应合成了掺杂锆的钛酸锌。 X射线衍射和差示扫描量热分析结果表明,六方形Zn(Zr-x Ti1-x)O-3相的稳定区域扩展到高温(945摄氏度以上)。 c / a值随Zr浓度的增加而降低,这可能是由于Zr4 +的添加导致中心离子与其八面体的最近邻之间的距离缩短以及B位离子与氧离子之间的键合力所致。钙钛矿样结构的ABO(3)变得更牢固。介电性能表现出对烧结温度和ZrO 2添加量的显着依赖性。随着Zr离子的增加,介电常数降低,居里温度(T-c)略有增加。这是由于ZnZrO3的第二相沉积在晶界处并抑制了晶粒的生长。此外,在Zn(Zr-x Ti1-x)O-3中,在接近室温的转变温度下观察到具有最大介电常数的扩散相转变。

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