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A novel method for fabrication of size-controlled metallic nanoparticles by laser ablation

机译:激光烧蚀制备尺寸控制金属纳米粒子的新方法

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Time resolved experimental investigation of laser produced plasma-induced shockwaves has been carried out in the presence of confining walls placed along the lateral directions using a Mach Zehnder interferometer in air ambient. Copper was used as target material. The primary and the reflected shock waves and their effects on the evolution of medium density and the plasma density have been studied. The reflected shock wave has been seen to be affecting the shape and density of the plasma plume in the confined geometry. The same experiments were performed with water and isopropyl alcohol as the ambient liquids and the produced nanoparticles were characterised for size and size distribution. Significant differences in the size and size distribution are seen in case of the nanoparticles produced from the ablation of the targets with and without confining boundary. The observed trend has been attributed to the presence of confining boundary and the way it affects the thermalisation time of the plasma plume. The experiments also show the effect of medium density on the mean size of the copper nanoparticles produced.
机译:时间分辨激光产生等离子体诱导的冲击波的实验研究已经在沿着限制使用在空气环境的马赫曾德干涉仪的横向方向放置壁的存在下进行。铜被用作靶材料。初级和反射冲击波以及它们对介质的密度和等离子体密度的演变的影响进行了研究。的反射冲击波一直被视为会影响在受限几何形状和等离子体羽流的密度。相同的实验用水和异丙醇进行与周围液体和所产生的纳米颗粒,其特征在于对于尺寸和尺寸分布。在尺寸和尺寸分布的差异显著被认为在从与靶的烧蚀产生的纳米颗粒的情况下和不限制的边界。所观察到的趋势已被归因于限制边界的存在和它的方式影响的等离子体羽流的热化时间。实验还表明介质密度上产生的铜纳米颗粒的平均尺寸的效果。

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