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Synthesis and characterization of binary and ternary nanocomposites based on TiO2, SiO2 and ZnO with PVA based template-free gel combustion method

机译:基于TiO2,SiO2和ZnO的二元和三元纳米复合材料用PVA基于PVA基于PVA的无模型凝胶燃烧方法的合成与表征

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摘要

Binary and ternary nanocomposites based on TiO2, SiO2 and ZnO were synthesized by PVA-based template-free gel combustion method. The morphology and the particles sizes of the synthesized samples depended on some parameters including the initial concentrations of metal salts and PVA amount in the sol, solvent composition and solution pH. Effects of these parameters were investigated and optimized by using the Taguchi method. In the experimental design, the Taguchi L25 array was used to investigate six factors at five levels. The samples were characterized by dynamic light scattering (DLS), transmission electron microscopy (TEM), Brunauer-Emmett-Teller (BET) specific surface areas, scanning electron microscopy (SEM). The obtained results showed that the present method can be used to synthesize TiO2/SiO2/ZnO ternary nanocomposite with an effective surface area of 0.3 m2 · g−1 and ZnO/TiO2, TiO2/SiO2, ZnO/SiO2 binary nanocomposites with an effective surface area of 234 m2 · g−1, 6 m2 · g−1 and 0.5 m2 · g−1, respectively. The ZnO/TiO2 nanocomposite which was synthesized under the following experimental conditions: 2.5 wt.% Zn salt, 2.5 wt.% Ti salt, 2.0 wt.% PVA, pH = 1 and ethanol:water ratio 30:70 was selected by the Taguchi method as an optimum sample with the smallest particles (average diameter = 50 nm).
机译:基于PVA的无凝胶燃烧方法合成了基于TiO 2,SiO 2和ZnO的二元和三元纳米复合材料。合成样品的形态和颗粒尺寸取决于一些参数,包括溶胶,溶剂组合物和溶液pH中的金属盐和PVA量的初始浓度。通过使用Taguchi方法研究和优化这些参数的效果。在实验设计中,TAGUCHI L25阵列用于在五个水平下进行六个因素。通过动态光散射(DLS),透射电子显微镜(TEM),Brunauer-Emmett-Teller(BET)特定表面积,扫描电子显微镜(SEM),表征样品。得到的结果表明,本发明方法可用于将TiO 2 / SiO 2 / ZnO三元纳米复合材料合成0.3m 2·G-1和ZnO / TiO2,TiO 2 / SiO 2,ZnO / SiO 2,ZnO / SiO 2的二元纳米复合材料,具有有效表面面积为234m2·g-1,6m2·g-1和0.5m 2·g-1。在以下实验条件下合成的ZnO / TiO2纳米复合材料:2.5重量%。%Zn盐,2.5重量%。%Ti盐,2.0重量%PVA,pH = 1和乙醇:水比例由Taguchi选择30:70方法作为具有最小颗粒的最佳样品(平均直径= 50nm)。

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