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Microstructural Characterization of BaTiO_3 Ceramic Nanoparticles Synthesized by the Hydrothermal Technique

机译:水热法合成BaTiO_3陶瓷纳米粒子的微观结构表征

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BaTiO3 (BT) nanoparticles were prepared by the hydrothermal technique using different starting materials and the micro structure examined by XRD, SEM, TEM and HRTEM. X-ray diffraction and electron diffraction patterns showed that the nanoparticles were the cubic BaTiC>3 phase. The BT nanoparticles prepared from the starting materials of as-prepared titanium hydroxide and barium hydroxide have spherical grain morphology, an average size of 65 nm and a fairly narrow size distribution. A uniform diffraction contrast across each single grain is observed in the TEM images, and the clear lattice fringes (with duo = 0.28 nm) observed in HRTEM images reveal that well-crystallized BT nanoparticles are synthesized by the hydrothermal method. The edges of the particles are very smooth, with no surface steps. BT nanoparticles with average grain size of 90 nm, synthesized using barium hydroxide and titanium dioxide as the starting materials, show surface facets. In this case a bimodal size distribution of large faceted and smaller particles is observed. Diffraction contrast variation across the particles caused by high strains within the particles is clearly observed. The high strains obviously stem from structural defects formed during hydrothermal synthesis, presumable in the form of lattice OH~ ions and their compensation by cation vacancies. HRTEM images demonstrate that surface facets parallel to the (100) and (110) planes and small islands with 3 ~ 4 atomic layer thickness are frequently observed around the edge of the particles.
机译:通过水热技术,使用不同的起始原料制备了BaTiO3(BT)纳米粒子,并通过XRD,SEM,TEM和HRTEM检查了其微观结构。 X射线衍射和电子衍射图谱表明纳米粒子为立方BaTiC> 3相。由所制备的氢氧化钛和氢氧化钡的起始原料制备的BT纳米颗粒具有球形晶粒形态,平均尺寸为65nm,并且尺寸分布相当窄。在TEM图像中观察到每个晶粒上均一的衍射对比,在HRTEM图像中观察到清晰的晶格条纹(duo = 0.28 nm)表明通过水热法合成了结晶良好的BT纳米颗粒。颗粒的边缘非常光滑,没有表面台阶。以氢氧化钡和二氧化钛为起始原料合成的平均粒径为90 nm的BT纳米颗粒具有表面刻面。在这种情况下,观察到大面和较小颗粒的双峰尺寸分布。清楚地观察到由粒子内的高应变引起的粒子间的衍射对比度变化。高应变显然是由水热合成过程中形成的结构缺陷引起的,可能以晶格OH〜离子的形式存在,并通过阳离子空位对其进行补偿。 HRTEM图像表明,经常在颗粒边缘附近观察到平行于(100)和(110)平面的表面小面以及具有3〜4个原子层厚度的小岛。

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