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Creation of zinc oxide based nanomaterials by repetitively pulsed laser treatment

机译:通过重复脉冲激光处理产生基于氧化锌的纳米材料

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By repetitively pulsed laser treatment with a frequency of 500 Hz was metal/semiconductor nanocomposite on a basis of zinc oxide nanowires created. An analysis of results made it possible to find that with described laser-induced vibroexcitation of samples, vibration speed increases for frequencies multiple to frequency of the initial oscillation, and when frequency is increasing the amplitude is decreasing. Samples heating particularities in consequence of laser irradiation were determined. Analysis of X-ray diffraction images showed that the zinc oxide creation on the porous copper-zinc alloy substrate occurs as a result thermal oxidation by the repetitively pulsed laser treatment. It is shown that intensification condition of mass transfer in a solid state of a metal material is a local non-stationary deformation that is produced by a highly-powered outer action. Using of synergies of thermal action and vibrations in a sound frequency range caused by laser irradiation, provides opportunity of a new approach realization for the structures creation of composite nanomaterials on a basis of zinc oxide in metal/semiconductor Cu/ZnO nanocomposite.
机译:通过重复地脉冲激光处理,频率为500Hz,在氧化锌纳米线的基础上是金属/半导体纳米复合材料。结果分析结果可以发现,通过描述的样本激光诱导的雕刻凝固,振动速度对于初始振荡频率的频率增加,并且当频率增加幅度时,振幅正在降低。确定了激光照射后果的样品加热特性。 X射线衍射图像的分析表明,通过重复脉冲激光处理的结果热氧化,发生多孔铜 - 锌合金基材上的氧化锌产生。结果表明,金属材料固态中的质量传递的强化条件是通过高功率的外部作用产生的局部非平稳变形。使用激光照射引起的声频范围中的热动作和振动的协同作用,为金属/半导体Cu / ZnO纳米复合材料中的氧化锌基于氧化锌进行了新方法的新方法实现的机会。

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