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The Effect of Dissolved Oxygen in Arc Medium on Crystal Structure and Optical Properties of Iron Based Nanoparticles Prepared via Dc Arc Discharge in Water

机译:溶解氧在水中DC电弧放电制备的铁基纳米粒子晶体结构和光学性质的影响

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Electrical arc discharge in liquid is a fast, cost-effective and an environmentally benign way for synthesis of nanomaterials. In this research iron based nanoparticles were synthesized via DC arc discharge submerging in deoxidized water and the effect of dissolved oxygen in arc discharge medium on morphology, crystal structure and optical properties of nanoparticles were studied. For nanoparticle synthesis a discharge current of 40 A was applied between pure iron electrodes which were submerged in deoxidized water and kept about 8 cm below the surface of water. Dissolved oxygen removal was performed by nitrogen gas bubbling for long time before arc discharge. Furthermore during synthesis a pressurized stream of nitrogen gas was directed perpendicular to the surface of deoxidized water. In addition, a sample was prepared in water without deoxidization under the same synthesis condition. The nanoparticles were characterized by X-ray diffraction (XRD), UV-visible spectroscopy and scanning electron microscopy (SEM). SEM results revealed that the particles were spherical with aspect ratios of about one. The average size of nanoparticle is below 30 nm in both samples. It was concluded that the reaction of dissolved oxygen molecules available in deionized water with iron nanoparticles leads to oxidation of nanoparticles during nucleation, nanoparticles formation and especially after synthesis. Therefore the oxygen atom in water molecules and oxygen ions in arc plasma do not have a significant effect on oxidation of nanoparticles. These results demonstrate the importance of oxygen removal of water in arc discharge method for preparation of pure metallic nanoparticles without considerable oxidation.
机译:液体中的电弧放电是一种快速,成本效益和一种用于合成纳米材料的环保方法。在该研究中,通过DC电弧放电浸没在脱氧水中合成的基于氧化物纳米颗粒,研究了溶解氧在电弧放电介质上的作用,研究了纳米颗粒的晶体结构和光学性质。对于纳米粒子合成,在纯铁电极之间施加40a的放电电流,该纯铁电极在脱氧水中浸没并在水面下方保持约8cm。在电弧放电之前通过氮气鼓泡进行溶解的氧去除。此外,在合成期间,加压氮气流垂直于脱氧水的表面。此外,在水中制备样品而不在相同的合成条件下脱氧。纳米颗粒的特征在于X射线衍射(XRD),UV可见光谱和扫描电子显微镜(SEM)。 SEM结果表明,颗粒具有约1的宽高比球形。在两个样品中,纳米粒子的平均尺寸低于30nm。得出结论是,用铁纳米粒子去离子水的溶解氧分子的反应导致纳米颗粒期间纳米颗粒,纳米颗粒形成,特别是在合成后氧化。因此,水分子中的氧原子和弧形等离子体中的氧离子对纳米颗粒的氧化没有显着影响。这些结果证明了氧气去除水在电弧放电方法中,以制备纯金属纳米颗粒而无需相当大的氧化。

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