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Sol-Gel Synthesis and Characterization of Cubic Bismuth Zinc Niobium Oxide Nanopowders

机译:立方铋锌氧化铌纳米粉的溶胶-凝胶法合成及表征

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Bismuth zinc niobium oxide (BZN) was successfully synthesized by a diol-based sol-gel reaction utilizing metal acetate and alkoxide precursors. Thermal analysis of a liquid suspension of precursors suggests that the majority of organic precursors decompose at temperatures up to 150°C, and organic free powders form above 350°C. The experimental results indicate that a homogeneous gel is obtained at about 200°C and then converts to a mixture of intermediate oxides at 350–400°C. Finally, single-phased BZN powders are obtained between 500 and 900°C. The degree of chemical homogeneity as determined by X-ray diffraction and EDS mapping is consistent throughout the samples. Elemental analysis indicates that the atomic ratio of metals closely matches a Bi1.5ZnNb1.5O7composition. Crystallite sizes of the BZN powders calculated from the Scherrer equation are about 33–98 nm for the samples prepared at 500–700°C, respectively. The particle and crystallite sizes increase with increased sintering temperature. The estimated band gap of the BZN nanopowders from optical analysis is about 2.60–2.75 eV at 500-600°C. The observed phase formations and measured results in this study were compared with those of previous reports.
机译:铋锌铌氧化物(BZN)是利用金属乙酸盐和醇盐前体通过基于二醇的溶胶-凝胶反应成功合成的。对前体液体悬浮液的热分析表明,大多数有机前体会在高达150°C的温度下分解,而高于350°C的有机游离粉会形成。实验结果表明,在约200°C时可获得均匀的凝胶,然后在350–400°C时转化为中间氧化物的混合物。最终,在500至900°C之间获得单相BZN粉末。通过X射线衍射和EDS作图确定的化学均匀度在整个样品中是一致的。元素分析表明,金属的原子比与Bi1.5ZnNb1.5O7组成紧密匹配。根据Scherrer方程计算出的BZN粉末的微晶尺寸分别在500–700°C时约为33–98–nm。颗粒和微晶尺寸随烧结温度的升高而增加。根据光学分析,BZN纳米粉在500-600°C时的带隙估计约为2.60-2.75 eV。将本研究中观察到的相形成和测量结果与以前的报告进行了比较。

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