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Morphologically controlled synthesis of ferric oxide nano/micro particles and their catalytic application in dry and wet media: a new approach

机译:形态控制合成三氧化二铁纳米/微粒及其在干湿介质中的催化应用:一种新方法

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Morphologically controlled synthesis of ferric oxide nano/micro particles has been carried out by using solvothermal route. Structural characterization displays that the predominant morphologies are porous hollow spheres, microspheres, micro rectangular platelets, octahedral and irregular shaped particles. It is also observed that solvent has significant effect on morphology such as shape and size of the particles. All the morphologies obtained by using different solvents are nearly uniform with narrow size distribution range. The values of full width at half maxima (FWHM) of all the products were calculated to compare their size distribution. The FWHM value varies with size of the particles for example small size particles show polydispersity whereas large size particles have shown monodispersity. The size of particles increases with decrease in polarity of the solvent whereas their shape changes from spherical to rectangular/irregular with decrease in polarity of the solvent. The catalytic activities of all the products were investigated for both dry and wet processes such as thermal decomposition of ammonium per chlorate (AP) and reduction of 4-nitrophenol in aqueous media. The results indicate that each product has a tendency to act as a catalyst. The porous hollow spheres decrease the thermal decomposition temperature of AP by 140?°C and octahedral Fe3O4 particles decrease the decomposition temperature by 30?°C. The value of apparent rate constant (kapp) of reduction of 4-NP has also been calculated.
机译:氧化铁纳米/微粒的形态学控制合成已通过溶剂热法进行。结构表征表明,主要形态为多孔空心球,微球,微型矩形薄片,八面体和不规则形状的颗粒。还观察到溶剂对诸如颗粒的形状和尺寸的形态具有显着影响。通过使用不同的溶剂获得的所有形态几乎都是均匀的,尺寸分布范围狭窄。计算所有产品的半峰全宽(FWHM)值,以比较其尺寸分布。 FWHM值随颗粒尺寸而变化,例如,小尺寸颗粒显示出多分散性,而大尺寸颗粒显示出单分散性。颗粒的尺寸随着溶剂极性的减小而增加,而随着溶剂极性的减小,它们的形状从球形变为矩形/不规则形状。研究了所有产品在干法和湿法过程中的催化活性,例如高氯酸铵(AP)的热分解和水性介质中4-硝基苯酚的还原。结果表明每种产物都有充当催化剂的趋势。多孔空心球使AP的热分解温度降低140℃,八面体Fe 3 O 4 颗粒使分解温度降低30℃。还计算了4-NP还原的表观速率常数(k app )的值。

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