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Preparation of nanocrystalline microwave dielectric Zn2TiO4 and ZnTiO3 mixture and X-ray microstructure characterization by Rietveld method

机译:纳米晶微波电介质Zn2TiO4和ZnTiO3混合物的制备及Rietveld法表征的X射线显微结构

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摘要

Nanocrystalline microwave dielectrics ZnTiO3 and Zn2TiO4 (spinel) phase have been prepared by high-energy ball milling the powder mixture of ZnO and anatase (a)-TiO2. Ball milling of equimolar powder mixture of ZnO and a-TiO2 is continued up to 6 h with some intermediate milling steps. Microstructure of all the samples is characterized by Reitveld's structure refinement method using X-ray powder diffraction data. Mixture of nanocrystalline ZnTiO3 and Zn2TiO4 is noticed to form after 6 h of ball milling. Within 30 min of milling formation of Zn2TiO4 is noticed in the X-ray diffraction pattern whereas the formation of ZnTiO3 starts after 2 h of ball milling. The formation mechanism, phase transition kinetics, structure and microstructure changes in terms of lattice imperfections and relative phase abundances of individual phases have been estimated from the analysis of X-ray powder diffraction data of unmilled and ball-milled samples by Rietveld's powder structure refinement method. (c) 2006 Elsevier B.V. All rights reserved.
机译:通过高能球磨ZnO和锐钛矿型(a)-TiO2的粉末混合物,制备了纳米晶态微波电介质ZnTiO3和Zn2TiO4(尖晶石)相。通过一些中间研磨步骤,将ZnO和α-TiO2等摩尔粉末混合物的球磨持续6小时。使用X射线粉末衍射数据,通过Reitveld的结构细化方法来表征所有样品的微观结构。注意到球磨6小时后形成纳米晶态ZnTiO 3和Zn 2 TiO 4的混合物。在研磨的30分钟内,在X射线衍射图中发现Zn2TiO4的形成,而ZnTiO3的形成在球磨2小时后开始。利用Rietveld的粉末结构细化方法,通过分析未研磨和球磨样品的X射线粉末衍射数据,估算了各个晶格的形成机理,相变动力学,结构和微观结构的变化,以及各个相的相对相丰度。 。 (c)2006 Elsevier B.V.保留所有权利。

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