首页> 外文期刊>Materials science in semiconductor processing >Formation mechanisms, structural and optical properties of Bi/Bi2O3 One dimensional nanostructures prepared via oriented aggregation of bismuth based nanoparticles synthesized by DC arc discharge in water
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Formation mechanisms, structural and optical properties of Bi/Bi2O3 One dimensional nanostructures prepared via oriented aggregation of bismuth based nanoparticles synthesized by DC arc discharge in water

机译:Bi / Bi2O3的形成机制,结构和光学性能一维纳米结构,通过DC电弧放电在水中合成的铋基纳米粒子的聚集

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Bismuth based rod-like nanostructures were prepared via oriented attachment of colloidal bismuth based nanoparticles synthesized by direct current (DC) arc discharge in liquid. For the synthesis of bismuth based nanoparticles 5 A and 20 A DC electrical currents were applied between two pure bismuth electrodes in water. Bismuth based nanoparticles extracted from the water after 30 days then dispersed in ethanol. Bismuth based rod-like nanostructures formed via the oriented attachment mechanism in ethanol during 30 days. According to X-ray diffraction (XRD) patterns of as-prepared samples, the main parts of the particles were bismuth phase while after 30 days bismuth oxide and bismuth hydroxide phases were dominant. To investigate the species that formed in plasma during the electrical discharge in water, optical emission spectroscopy (OES) was used. The OES spectra demonstrate the creation of Bi-I, Bi-II, O-I, O-II and H ions and H-2-I molecules for both currents. UV-visible spectroscopy and field emission scanning electron microscopy (FE-SEM) were used for the study of optical properties, morphology and size distribution of the nanostructures respectively. Optical transmission spectra of synthesized nanostructures in water indicated the optical characteristic of both bismuth and bismuth oxide. FE-SEM images illustrate that bismuth based nanoparticles are rather spherical as-prepared and formed rod-like nanostructures by passing the time in the presence of ethanol. Also, the size of nanoparticles and subsequently diameter of rod-like nanostructures for samples that prepared by 5 A arc current is more than samples that prepared by 20 A. The results provide a simple and flexible method for synthesis of bismuth based rod-like nanostructures.
机译:通过直接电流(DC)电弧放电在液体中取向基于基于胶体铋的纳米颗粒制备基于铋的棒状纳米结构。对于基于铋的纳米颗粒5a和20,在水中的两个纯铋电极之间施加DC电流。基于铋的纳米颗粒在30天后从水中萃取,然后分散在乙醇中。在30天内通过乙醇中取向的附着机制形成的基于铋的棒状纳米结构。根据以制备的样品的X射线衍射(XRD)图案,颗粒的主要部分是铋阶段,同时在30天后氧化铋和氢氧化铋相占优势。为了研究在水中的放电期间在等离子体中形成的物种,使用光发射光谱(OES)。 OES光谱证明了Bi-1,Bi-II,O-I,O-II和H离子和H-2-I分子的产生。 UV可见光光谱和场发射扫描电子显微镜(Fe-SEM)分别用于研究纳米结构的光学性质,形态和尺寸分布。水中合成纳米结构的光学透射光谱表明了氧化铋和氧化铋的光学特性。 Fe-SEM图像说明基于铋的纳米颗粒,通过在乙醇存在下通过时间来制备和形成棒状纳米结构。而且,纳米颗粒的尺寸和随后的棒状纳米结构的直径为5A弧电流制备的样品的样品比20A制备的样品更多。结果提供了一种简单且灵活的合成铋的棒状纳米结构的方法。

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