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Investigation of the effect of precursor ratios on the solution combustion synthesis of zinc zirconate nanocomposite

机译:前驱体比例对锆酸锌纳米复合材料固溶燃烧合成影响的研究

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摘要

Zinc zirconate nanocomposite was synthesized by a low-temperature solution combustion method using citric acid as fuel at a pH of 7. The synthesis was done by varying the ratios of zirconium butoxide and zinc nitrate, which were the precursors in this study. The samples were calcined at 600 °C for 2 h then their structural and optical characteristics investigated. The analysis showed that the nanocomposite consisted of mixed phases of zinc zirconate, zinc oxide, and zirconium oxide. As the Zn /Zr ratio increased, the highly agglomerated morphologies gradually developed crystalline aggregates mixed with nanorods. A red-shifted blue emission with a peak at 409 nm was observed in the photoluminescence spectra and the composites had an energy bandgap between 2.81 and 3.12 eV.
机译:锆酸锌纳米复合材料是通过低温溶液燃烧法,以柠檬酸为燃料,在pH为7的条件下合成的。合成方法是通过改变丁醇锆和硝酸锌的比例来完成的。将样品在600°C下煅烧2 h,然后研究其结构和光学特性。分析表明,纳米复合材料由锆酸锌,氧化锌和氧化锆的混合相组成。随着Zn / Zr比率的增加,高度聚集的形态逐渐形成与纳米棒混合的晶体聚集体。在光致发光光谱中观察到红移的蓝光发射峰在409 nm,复合材料的能带隙介于2.81和3.12 eV之间。

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