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Microstructure and optical properties of ZnO nanorods prepared by anodic arc plasma method

机译:阳极电弧等离子体法制备ZnO纳米棒的微观结构和光学性能

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Introduction: A one-dimensional ZnO nanostructure is a versatile and multifunctional n-type semiconductor. In this paper, ZnO nanorods were successfully prepared by the anodic arc plasma method in an oxidizing atmosphere. Methods: The composition, morphology, crystal microstructure, and optical properties of ZnO nanorods were characterized by using X-ray diffraction (XRD), high-resolution transmission electron microscopy (HRTEM) and the corresponding selected-area electron diffraction (SAED), X-ray energy dispersive spectrometry (XEDS), ultravioletvisible (UV-VIS) spectroscopy, Raman scattering spectrum (Raman), and photoluminescence spectrum (PL). Results: The experiment results show that ZnO nanorods synthesized by this method possess hexagonal wurtzite crystal structure with good crystallization, no other impurity phases are observed, the crystalline size is about 18 nm, and the lattice constant distortion occurs compared to that of bulk ZnO. The morphology of the sample is a rod-like shape, the length ranges from 100 nm to 300 nm, the average diameter is approximately 20 nm, and the aspect ratio is relatively high. The UV-VIS absorption spectrum occurs red shift, The Raman spectrum further demonstrates that the major peaks are assigned to ZnO optical vibrational modes, and the PL spectrum exhibits coexistence properties of ultraviolet (UV) and green emission. Conclusions: The results prove that ZnO nanorods with hexagonal wurtzite crystal structure were successfully prepared by the anodic arc plasma method in an oxidizing atmosphere.
机译:简介:一维ZnO纳米结构是一种通用和多功能N型半导体。本文通过氧化气氛中的阳极电弧等离子体方法成功制备了ZnO纳米棒。方法:通过使用X射线衍射(XRD),高分辨率透射电子显微镜(HRTEM)和相应的选择区域电子衍射(SAED),表征ZnO纳米棒的组成,形态,晶体微观结构和光学性质。 -REARE能量分散光谱(XEDs),紫外线(UV-VIS)光谱,拉曼散射光谱(拉曼)和光致发光光谱(PL)。结果表明,实验结果表明,通过该方法合成的ZnO纳米棒具有较好的结晶晶体晶体结构,未观察到其他杂质相,结晶尺寸为约18nm,与散装ZnO相比,晶格恒定变形。样品的形态是杆状形状,长度范围为100nm至300nm,平均直径约为20nm,纵横比相对较高。 UV-Vis吸收光谱发生红移,拉曼光谱进一步证明了主要峰被分配给ZnO光学振动模式,并且PL光谱表现出紫外(UV)和绿色发射的共存特性。结论:通过阳极电弧等离子体法在氧化气氛中成功地制备了ZnO纳米棒的ZnO纳米棒。

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