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Size-dependent physicochemical properties of mesoporous nanosilica produced from natural quartz sand using three different methods

机译:使用三种不同方法从天然石英砂生产的介孔纳米二氧化硅的尺寸依赖性理化性质

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Mesoporous high-surface-area silica (SiO2) nanoparticles were produced from natural quartz sand (orthoquartzite) using three processing methods namely sol-gel, sonication, and spray pyrolysis. The inexpensive precursor was extracted from the quartz sand by alkali extraction followed by acid precipitation, which was used for all the three methods. The effects of production methods were investigated by various characterization techniques. The physicochemical properties of the obtained nanoparticles were compared to explore the effect of size and porosity on their electronic, optical, mechanical, and electrical qualities. The produced SiO2 nanoparticles were found to have an amorphous high surface area in the range of 178-322 m(2) g(-1) and a uniform size distribution with the high purity and spherical morphology. These particles formed a mesoporous material with an average pore diameter of 10-26 nm. It was found that the surface area (178 < 284 < 322 m(2) g(-1)) and band gap (5.41 < 5.43 < 5.45 eV) of the particles increased with a decrease in particle size (39 > 30 > 10 nm) when the process method was changed from sol-gel to sonication and from sonication to spray pyrolysis. This study provides useful insights and guidance for the preparation of mesoporous SiO2 nanoparticles from quartz sand and throws light on how physicochemical properties are influenced by process methods and particle size.
机译:介孔高表面积二氧化硅(SiO2)纳米粒子是使用溶胶-凝胶,超声处理和喷雾热解三种方法从天然石英砂(原方石英岩)制成的。通过碱萃取,然后酸沉淀,从石英砂中萃取出廉价的前体,这用于所有三种方法。通过各种表征技术研究了生产方法的效果。比较获得的纳米颗粒的理化性质,以探索尺寸和孔隙率对其电子,光学,机械和电气质量的影响。发现所生产的SiO2纳米颗粒具有178-322 m(2)g(-1)范围内的无定形高表面积,并且具有高纯度和球形形态的均匀尺寸分布。这些颗粒形成平均孔径为10-26nm的中孔材料。发现颗粒的表面积(178 <284 <322 m(2)g(-1))和带隙(5.41 <5.43 <5.45 eV)随着粒径的减小而增加(39> 30> 10纳米),当处理方法从溶胶-凝胶改为超声处理,从超声处理变为喷雾热解时。这项研究为从石英砂制备介孔SiO2纳米颗粒提供了有用的见识和指导,并阐明了理化性质如何受到加工方法和粒径的影响。

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