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Complex permittivity characterization of double oxides of the perovskite crystal structure

机译:钙钛矿晶体结构双氧化物的复杂介电常数表征

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Perovskite mineral structure is cubic, with one formula-weight per unit cell. Its name was given by the mineral CaTiO{sub}3. A large number of double oxides (as well as some iodates and double halides) are classified as belonging to this type. In this work the dielectric properties of perovskite crystals are presented, namely the complex permittivity (real and imaginary part) and the loss factor (tanδ). Their values in the 20Hz-1MHz frequency range were obtained using the equivalent capacitance - conductance parallel circuit method. Specimens were prepared by mixing TiO{sub}2 (of predominantly anatase structure) and CaCO{sub}3 (calcite) powders and compressing them uniaxially to form pellets. These were sintered at temperatures as high as 1200°C. According to the XRD results obtained, not only did the anatase convert to rutile and the calcite to lime (CaO), but also the double oxide CaTiO{sub}3 was formed, as in the natural perovskite mineral. Its formation was related to higher dielectric constant values and significantly lower losses compared to specimens sintered at lower temperatures, where the perovskite structure was less intense. Such high-κ and low-loss dielectric materials have lately found significant attention in the quest of smart antennas for telecommunication applications.
机译:Perovskite矿物结构是立方体,每单位细胞的一种配方重量。它的名字由矿物catio {sub} 3给出。大量的双氧化物(以及一些碘酸盐和双卤化物)被归类为属于这种类型。在这项工作中,给出了钙钛矿晶体的电介质特性,即复杂介电常数(真实和虚部)和损耗因子(Tanδ)。使用等效电容 - 电导并联电路方法获得20Hz-1MHz频率范围中的值。通过混合TiO {sub} 2(主要是锐钛矿结构)和Caco {sub} 3(方解石)粉末来制备样品并单轴压缩它们以形成颗粒。这些在高达1200℃的温度下烧结。根据获得的XRD结果,不仅锐钛矿转化为金红石和方解石对石灰(CaO),而且还形成了双氧化物CaTiO {Sub} 3,如天然钙钛矿矿物质中。与在较低温度下烧结的试样相比,其形成与较高的介电常数值和显着较低的损失,其中钙钛矿结构不太强烈。这种高κ和低损耗介电材料在智能天线寻求电信应用中,最近发现了重要的关注。

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