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One Pot Facile Synthesis of Selenium Nanostructures by Microwave Assisted Solvothermal Process

机译:微波辅助溶剂热法硒纳米结构的一个罐容貌合成

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Research in Selenium nanostructures is very much attractive owing to their variety of technological applications. Synthesis of Selenium nanostructures reported in literature is cumbersome due to itscomplex and lengthy synthesis procedures. A one pot facile synthesis by microwave assisted solvothermal reaction is reported in this work. A simple reduction of SeO_2 in presence of microwave yields the Se nanostructure of different morphology such as nano particles and different sizes of nanorods. Moreover an extended procedure of aging the end composition in ethanol solvent for 8hrs is observed to yield Se nanoneedles and aging in ethylene glycol(EG) for one week results in the formation of longer nanorods. Structural analysis from powder XRD diffratogram confirms a trigonal unit cell with P3121 space group while the compositional analysis was performed using Energy dispersive X-ray spectroscopy(EDX).Field emission Scanning electron microscope (FESEM) images indicate the presence of nanoflakes of size (400 to 900) nm. However the morphology of sample indicates the presence of only nanorods in needle shape with length (5 to 6) μm and diameter (0.5 to1.30) μm and longer aged sample in EG indicates the presence of nanowires with length of the order of (~100) μm and diameter of the order of (~3) μm. Optical band gap obtained from (Kubelka-Munk) plot for investigated samples indicate a direct band gap of around(1.72 to1.76) eV with an infinitesimal but significant variation betweendifferent morphology samples. This one pot facile, reproducible, scalable and controllable approach using microwave assisted synthesis is promising for tuning the physical and morphological properties of Se nanostructures in the field of thermoelectrics.
机译:研究硒纳米结构是非常有吸引力的,由于他们的各种技术应用。硒的纳米结构的合成在文献中报道是麻烦由于itscomplex和冗长的合成方法。通过微波辅助溶剂热反应一锅简便合成报道了这项工作。在微波的存在下,简单地减小SeO_2的产生不同的形态的硒纳米结构例如纳米颗粒和不同的尺寸的纳米棒。此外在时效8小时为乙醇溶剂中的最终组成的扩展过程中观察到,得到硒纳米针和在乙二醇(EG)一周导致较长的纳米棒的形成老化。而使用能量色散X射线光谱仪(EDX)的点域发射扫描电子显微镜进行组成分析,从粉末X射线衍射diffratogram结构分析确认与P3121空间群的三角单元电池(FESEM)图像指示尺寸的纳米薄片的存在(400至900)纳米。然而样品的形态仅指示纳米棒在针状存在下与长度(5〜6)微米,直径(0.5 to1.30)微米和在EG再老化的样品与指示的顺序的长度(纳米线的存在〜 100)微米,(〜3)微米量级的直径。对于所研究的样品表明周围(1.72 to1.76)电子伏特与无穷小但显著变化betweendifferent形态样品直接带隙从(库贝卡 - 芒克)图获得的光学带隙。此一锅煮的轻便,可再现的,可扩展和使用可控的方法微波辅助合成是有前途用于调谐在热电领域硒纳米结构的物理和形态学特性。

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