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Stoichiometry of laser ablated brass nanoparticles in water and air

机译:水和空气中激光烧蚀黄铜纳米粒子的化学计量

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We report on the stoichiometric analysis of laser ablated brass plasma nanoparticles (NPs) in water and ambient air. Morphological study of the deposited NPs in water showed smaller spherical NPs compared to micrometer sized spherical particles in air. The smaller particles were Zn enriched and the concentration decreased with increases in size. Photoluminescence of particles at 380 nm corresponding to ZnO showed higher concentrations of Zn with smaller sized deposited NPs, whereas the micrometer sized particles showed multiple peaks at 415 and 440 nm, which implied that there was an abundance of the Cu fraction in the NPs. Plasma plume parameters, electron temperature, electron density, and evolution of the plasma plume were studied using optical emission spectroscopy and 2-dimensional imaging of the plume. The mass ablation rate in water was observed to be greater than that in air. Higher electron density and temperature of the plasmoid in water was attributed to confinement of the plasma plume near the target surface in water.
机译:我们报告在水和环境空气中的激光烧蚀黄铜等离子体纳米颗粒(NPs)的化学计量分析。与水中的微米级球形颗粒相比,水中沉积的NP的形态学研究显示较小的球形NP。较小的颗粒富含Zn,浓度随尺寸增加而降低。对应于ZnO的380 nm颗粒的光致发光显示较高的Zn浓度,且沉积的NP较小,而微米级的颗粒在415和440 nm处显示多个峰,这表明NP中存在大量的Cu组分。使用光发射光谱和羽流的二维成像研究了羽流参数,电子温度,电子密度和羽流的演变。观察到水中的质量消融速率大于空气中的质量消融速率。水中等离子体的较高电子密度和温度归因于等离子体羽在目标表面附近的局限。

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