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A novel foam combustion approach for the synthesis of nano-crystalline cobalt oxide powder

机译:一种新型泡沫燃烧方法,用于合成纳米晶钴氧化物粉末

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This article focuses on the nano-crystalline tricobalt tetraoxide (Co3O4) synthesis using the combustion method. The fabrication process involves the combustion a mixture of cobalt nitrate as oxidized and expanded polystyrene (EPS) as a novel fuel. The effects of fuel/oxidizer ratio on the phases formed, Co3O4 as a major phase and CoO as an impurity, and the Co3O4 crystallite size have been addressed. Based on the thermal analyses data (TGA and DTA), which follow the phase changes during the heat treatment of the parent fuel/oxidizer precursor, the different parent precursors have been calcined at 500 degrees C. Characterization of the formed solids has been performed using various tools (XRD, FT-IR, SEM, TEM, and XPS). It was concluded that the EPS content, in the combustion precursor mixtures, is a key parameter that controls the phase features of the prepared nanomaterials. CoO impurity was detected for the solids with EPS 4 wt%. The crystallite size, morphology, and the surface elemental concentration are influenced by changing the EPS content. The activity of the different powders towards hydrogen peroxide decomposition has been evaluated at the 35-50 degrees C temperature range.
机译:本文侧重于使用燃烧方法的纳米结晶三羧醇四氧化物(CO3O4)合成。制造方法涉及燃烧硝酸钴作为氧化和膨胀的聚苯乙烯(EPS)作为新燃料的混合物。已经解决了燃料/氧化剂比对形成的相,CO3O4作为主要相和COO,以及CO3O4微晶尺寸的影响。基于热分析数据(TGA和DTA),其在母燃料/氧化剂前体的热处理期间遵循相变,不同的母体前体已经在500℃下煅烧。已经使用形成的形成固体表征各种工具(XRD,FT-IR,SEM,TEM和XPS)。结论是,在燃烧前体混合物中的EPS含量是控制制备的纳米材料的相位特征的关键参数。用EPS&gt检测官方杂质。 4 wt%。微晶尺寸,形态和表面元素浓度受改变EPS含量的影响。在35-50℃的温度范围内评估了不同粉末对过氧化氢分解的不同粉末的活性。

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