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NANORODS OF COBALT OXIDE: STUDY ON ITS MORPHOLOGY WITH VARIED SONICATION TIME

机译:氧化钴的纳米棒:与多种超声时间的形态研究

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Nanomaterials research has become a major attraction in the field of advanced materials research in the area of Physics, Chemistry, and Materials Science. Biocompatible and chemically stable magnetic metal oxide nanoparticles have biomedical applications that includes drug delivery, cell and DNA separation, gene cloning, magnetic resonance imaging (MRI). This research is aimed at the fabrication of magnetic cobalt oxide nanoparticles using a safe, cost effective, and easy to handle technique that is capable of producing nanoparticles free of any contamination. Nanostructured Cobalt oxide powder was prepared by sonication method using ultrasonicator. Effect of sonication for different time intervals, on the morphology of cobalt oxide nanostructures was extensively studied. The morphology of the nanorods were very much affected by the sonication time, it was found that with an increase in sonication time, the length of the nanorods seem to considerably increase at the same time an agglomeration effect comes in to action and the rods form bundle like structures. These cobalt oxide nanorods were characterized using X-ray Diffraction characterization (XRD) and it revealed a cubic structure. Weight percentage of cobalt oxide was confirmed by thermo gravimetric analysis (TGA).
机译:纳米材料研究已成为物理学,化学和材料科学领域的先进材料研究领域的一个主要吸引力。生物相容性和化学稳定的磁性金属氧化物纳米颗粒具有包括药物递送,细胞和DNA分离,基因克朗,磁共振成像(MRI)的生物医学应用。该研究旨在使用安全,成本效果,易于处理的技术制造磁性钴氧化物纳米粒子,该技术能够生产不含任何污染的纳米颗粒。使用超声波仪通过超声波处理方法制备纳米结构氧化钴粉。广泛研究了对不同时间间隔的超声处理的影响,对氧化钴纳米结构的形态进行了广泛研究。纳米棒的形态受到超声处理时间的影响非常严重,发现随着超声处理时间的增加,纳米棒的长度同时相当大增加,聚集效应进入动作和杆状束像结构。使用X射线衍射表征(XRD)表征这些氧化钴纳米棒,并显示出立方结构。通过热重量分析(TGA)证实了氧化钴的重量百分比。

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