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Oxide Nanostructures: Characterizations And Optical Bandgap Evaluations Of Cobalt-Manganese And Nickel-Manganese At Different Temperatures

机译:氧化物纳米结构:钴锰和镍锰在不同温度下的表征和光学带隙评估

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摘要

Cobalt-Manganese and Nickel-Manganese oxide (CoMnO and NiMnO) nanoparticles were prepared by chemical co-precipitation method by decomposition of their respective metal sulfides and sodium carbonate using ethylene diamene tetra acetic acid as the capping agent. The samples were heated at 400, 600 and 800 °C. The average particle sizes were determined from the X-ray line broadening. The diffractograms were compared with JCPDS data to identify the crystallographic phase and cubic structure of the particles. The samples were characterized by XRD, FTIR and UV analyses. The internal elastic micro strains were calculated and it was seen that as the particle size increases strain decreases. The FTIR studies have been used to confirm the metal oxide formation. The chemical compositions of the samples were verified using EDX spectra. The surface morphologies of the samples were studied from the SEM images. The absorption spectra of the materials in the UV-Vis-NIR range were recorded. From the analysis of the absorption spectra, the direct band gaps of the materials were calculated.When you are citing the document, use the following link http://essuir.sumdu.edu.ua/handle/123456789/9654
机译:钴锰和镍锰氧化物(CoMnO和NiMnO)纳米粒子是通过化学共沉淀法通过使用乙二胺四乙酸作为封端剂分解其各自的金属硫化物和碳酸钠而制备的。将样品在400、600和800℃下加热。从X射线线展宽确定平均粒径。将衍射图与JCPDS数据进行比较,以确定颗粒的结晶相和立方结构。通过XRD,FTIR和UV分析对样品进行表征。计算出内部弹性微应变,可以看出随着粒径的增加,应变降低。 FTIR研究已用于确认金属氧化物的形成。样品的化学成分使用EDX光谱进行验证。从SEM图像研究了样品的表面形态。记录材料在UV-Vis-NIR范围内的吸收光谱。通过对吸收光谱的分析,可以计算出材料的直接带隙。引用本文时,请使用以下链接http://essuir.sumdu.edu.ua/handle/123456789/9654

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