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Crystallography and RD for Material Science from Our Research: Electroceramics

机译:我们研究中的材料科学晶体学和研发:电烧芯

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This article summarizes the work of the author's lab based on crystallography. The topics are categorized in the following three fields: The first category is crystallographic analysis of materials, the second one is correlations between crystal structure and their properties, and the third one is crystallography for processing such as epitaxy, topotaxy and templates. The examples for these categories are: (1) multilayer ceramic capacitor (MLCC); (2) microwave dielectrics of tungstenbronze-type like solid solutions, and piezoelectric materials langasite (La_3Ga_5SiO_(14)); (3) thin film growth of GaN or AIN on sapphire for example of epitaxy, hydroxy-apatite grown on diopside for topotaxy, and template growth of microwave dielectrics for template. Crystallography is useful in all studies, but is not almighty. Interdisciplinary study between crystallography and solid state physics is necessary to make clear the mechanism of the properties.
机译:本文总结了基于晶体学的作者实验室的工作。主题在以下三个领域分类:第一类是材料的晶体侵蚀性分析,第二个是晶体结构与其性质之间的相关性,第三个是用于加工的晶体,如外延,拓扑和模板。这些类别的示例是:(1)多层陶瓷电容器(MLCC); (2)钨凝血型微波施胶型,如固体溶液,和压电材料兰萨斯(La_3Ga_5sio_(14)); (3)GaN或AIN在蓝宝石上薄膜生长,例如外延,羟基磷灰石在潜水层上生长,以及模板微波电介质的模板生长。晶体学在所有研究中都很有用,但不是全能的。结晶和固态物理学之间的跨学科研究是明确性质的机制必需的。

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