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Facile Synthesis and Characterization of Fe-Co Nanoparticies Supported Silica Rice Husk

机译:Fe-Co纳米颗粒支持的二氧化硅稻壳的容易合成与表征

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A series of Fe-Co nanoparticies were synthesized via sol-gel route at acidic, neutral and basic condition using rice husk as the silica source. The synthesized nanomaterials were designated as Fe-Co3, Fe-Co7 and Fe-Co9 and characterized by Fourier Transform Infrared (FTIR), Transmission Electron Microscope (TEM) and particle size analyzer. The great effect of pH was clearly evidenced from the shifting in the siloxane bond in the FTIR spectrum. TEM investigation confirmed the existence of discrete and almost sphere like nanoparticies. The particle size decreased with an increase in the pH, registering the smallest average particle size at pH 9. In brief, this study promises a fast, rapid and promising method for the conversion of silica rice husk into nanoscale bimetallic materials.
机译:通过酸性,中性和基本条件的溶胶 - 凝胶途径合成一系列Fe-Co纳米颗粒作为二氧化硅源。合成的纳米材料被称为Fe-CO3,Fe-CO7和Fe-CO9,其特征在于傅里叶变换红外(FTIR),透射电子显微镜(TEM)和粒度分析仪。在FTIR光谱中,硅氧烷键的移位清楚地证明了pH的大效果。 TEM调查证实了离散和几乎球体的存在,如纳米常规。粒度随着pH的增加而降低,在pH9时注册最小的平均粒度。简而言之,本研究有助于将二氧化硅稻壳转化为纳米级双金属材料的快速,快速和有希望的方法。

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