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Structural interpretation of SnO2 nanocrystals of different morphologies synthesized by microwave irradiation and hydrothermal methods

机译:微波辐射和水热法合成不同形态的SnO2纳米晶体的结构解释

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The detailed understanding of the crystal structure and microstructure of nanomaterials is useful to predict the properties of nanomaterials. SnO2 nanocrystals of different shapes like particles, spheres, rods and pyramids are chemically synthesized. Here, we report the crystal structure and microstructure of SnO2 nanocrystals of different morphologies using X-ray diffraction and high-resolution transmission electron microscopy (HRTEM). It is interesting to note that the tetragonal phase is found in particle, sphere and rod shaped SnO2 nanocrystals and pyramid shaped nanocrystals are composed of two types of orthorhombic phases. The Rietveld method has been used for refining simultaneously the atomic structure and microstructure of different SnO2 nanocrystals, and the growth mechanisms in different shapes are found to be different due to different preferential growth. Structural defects such as oxygen vacancies, deformation of unit cell and more importantly texturing effects are associated with change in bond length, bond angle and crystallite morphology. Size and lattice strain of different kinds of SnO2 nanocrystals are also studied in detail by using the Rietveld method of analysis and transmission electron microscopy (TEM).
机译:对纳米材料的晶体结构和微观结构的详细了解有助于预测纳米材料的性能。化学合成了不同形状的SnO2纳米晶体,如颗粒,球形,棒形和金字塔形。在这里,我们使用X射线衍射和高分辨率透射电子显微镜(HRTEM)报告了不同形态的SnO2纳米晶体的晶体结构和微观结构。有趣的是,在颗粒,球形和棒状SnO2纳米晶体中发现了四方相,而金字塔形纳米晶体则由两种正交晶相组成。 Rietveld方法已用于同时细化不同SnO2纳米晶体的原子结构和微结构,并且由于优先生长的不同,发现不同形状的生长机理也不同。结构缺陷(例如氧空位,晶胞变形以及更重要的是纹理化效果)与键长,键角和微晶形态的变化有关。还使用Rietveld分析和透射电子显微镜(TEM)方法详细研究了各种SnO2纳米晶体的尺寸和晶格应变。

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