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Synthesis And Physico-chemical Characteristics Of Nanosized Particles Produced By Laser Ablation Of A Nickel Target In Water

机译:水中镍靶激光烧蚀产生纳米级颗粒的合成及理化特性

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Ablation of Ni targets in water by laser impact (532 nm, 40 mJ/pulse, 10 Hz and 8 ns duration) focused on massive samples (~2 mm diameter) generates colloids with fine nanoparticles. The amount of metal released in the solution (measured by mass loss of the target or ICP) was found to increase first linearly with time, but slower after 8 min of impact. The size distribution of the nanoparticles thus produced was measured (by TEM) to be in the range 3 - 5.3 nm in diameter, with a tendency for the size to be smaller for larger number of laser shots. Actually, nickel oxide nanoparticles were produced, rather than nickel nanoparticles as it was shown by HRTEM. XPS photoemission measurements evidenced the presence of nickel oxide species on the crater of the nickel sample surface after laser ablation.
机译:通过聚焦于大量样品(直径约2 mm)上的激光冲击(532 nm,40 mJ /脉冲,10 Hz和8 ns的持续时间)消融水中的镍靶,生成具有细纳米颗粒的胶体。发现溶液中释放的金属量(通过靶标或ICP的质量损失来衡量)首先随时间线性增加,但在撞击8分钟后变慢。如此产生的纳米颗粒的尺寸分布(通过TEM测量)在直径为3-5.3nm的范围内,对于较大数量的激光照射,尺寸倾向于减小。实际上,生成的是氧化镍纳米粒子,而不是像HRTEM所示的那样生成镍纳米粒子。 XPS光发射测量结果表明,激光烧蚀后,镍样品表面的凹坑中存在氧化镍物质。

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