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Developmental Prospects of the Methods for Synthesizing Titanates of the Perovskite-Type Structure and Their Doping with Rare-Earth Elements

机译:合成钙钛矿型结构钛酸盐的方法的发育前景及其稀土元素的掺杂

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摘要

A review of methods for fabricating titanates of a perovskite-type structure and their doping with rare-earth elements is presented. The results of the scientific research of authors from different countries related to the study of the effect of doping titanates of the perovskite structure by rare-earth elements on their electromagnetic properties are discussed. The content of the work also includes information on the use of titanates of the perovskite-type structure in various industries. A comparative analysis of some morphological properties (particle size and structure) and electromagnetic characteristics (dielectric constant, Curie temperature, and modulus of longitudinal oscillations (d33)) of powders fabricated (and doped) by different methods is carried out by the example of barium titanate (BaTiO3). Procedures for fabricating BaTiO3 by various methods, such as solvothermal, hydrothermal, sol-gel, chemical deposition, and solid-phase sintering, are described. The results of studying the influence of the variation in process parameters (temperature, pH, composition of the initial mixture of materials, and concentration of reagents) on the phase, morphology, and formation rate of BaTiO3 particles during the hydrothermal synthesis (with the use of BaCl2, TiCl4, and NaOH as initial materials) are presented. The experiments on studying the influence of the microwave-radiation power during the solid-phase sintering of BaCO3 and TiO2 on dielectric and ferroelectric properties of BaTiO3 are also presented. An analysis of fabrication methods of BaTiO3 and its doping by rare-earth elements results in the statement that the hydrothermal method and solid-phase sintering, including the application of the microwave radiation, are currently the most promising fabrication technologies of materials with the perovskite-type structure with specified properties.
机译:介绍了制造钙钛矿型结构钛酸盐的方法及其与稀土元素的掺杂方法。讨论了与不同国家相关的作者科研结果,讨论了稀土元素对其电磁特性掺杂钙钛矿结构掺杂钛酸盐的影响。该工作的内容还包括有关各行业中钙钛矿型结构的钛酸钛的使用的信息。通过不同方法的粉末的粉末的一些形态特性(粒度和结构)和电磁特性(介电常数,居里温度和纵向振荡模量(D33))进行了不同的方法,通过钡制备(和掺杂)的粉末钛酸盐(BATIO3)。描述了通过各种方法制造BATIO3的方法,例如溶剂热,水热,溶胶 - 凝胶,化学沉积和固相烧结。研究过程参数(材料初始混合物的初始混合物和试剂浓度的温度,pH,初始混合物的组成)对水热合成期间BATIO3颗粒的形成速率(使用提出了Bacl2,TiCl4和NaOH作为初始材料)。还介绍了在BACO3和TiO2对BATIO3电介质和铁电性能下进行微波辐射功率的研究的实验。稀土元素的制造方法分析及其稀土元素的掺杂导致陈述的热热方法和固相烧结,包括微波辐射的应用,是目前具有钙钛矿的材料的最有前途的制造技术 - 类型结构具有指定属性。

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