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SeZnSb alloy and its nano tubes, graphene composites properties

机译:SeZnSb合金及其纳米管,石墨烯复合材料的性能

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Composite can alter the individual element physical property, could be useful to define the specific use of the material. Therefore, work demonstrates the synthesis of a new composition Se96-Zn2-Sb2 and its composites with 0.05% multi-walled carbon nano tubes and 0.05% bilayer graphene, in the glassy form. The diffused amorphous structure of the multi walled carbon nano tubes and bilayer gaphene in the Se96-Zn2-Sb2 alloy have been analyzed by using the Raman, X-ray photoluminescence spectroscopy, Furrier transmission infrared spectra, photoluminescence, UV/visible absorption spectroscopic measurements. The diffused prime Raman bands (G and D) have been appeared for the multi walled carbon nano tubes and graphene composites, while the X-ray photoluminescence core energy levels peak shifts have been observed for the composite materials. Subsequently the photoluminescence property at room temperature and a drastic enhancement (upto 80%) in infrared transmission percentage has been obtained for the bilayer graphene composite, along with optical energy band gaps for these materials have been evaluated 1.37, 1.39 and 1.41 eV.
机译:复合材料可以改变单个元素的物理性质,可能有助于定义材料的特定用途。因此,工作证明了以玻璃态形式合成具有0.05%多壁碳纳米管和0.05%双层石墨烯的新型成分Se96-Zn2-Sb2及其复合材料。通过使用拉曼光谱,X射线光致发光光谱,Furrier透射红外光谱,光致发光,UV /可见吸收光谱测量来分析Se96-Zn2-Sb2合金中多壁碳纳米管和双层缝隙的扩散非晶态结构。对于多壁碳纳米管和石墨烯复合材料,已经出现了扩散的本征拉曼能带(G和D),而复合材料的X射线光致发光核心能级却出现了峰位移。随后,对于双层石墨烯复合材料,获得了室温下的光致发光性能和红外透射率的大幅提高(最高80%),并且这些材料的光能带隙也被评估为1.37、1.39和1.41 eV。

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