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Shock-wave synthesis of nanoparticles during ion sputtering

机译:离子溅射期间纳米颗粒的冲击波合成

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We report electron microscopy studies of nanoparticles (500<=n<=10~4,where n is the number of atoms in a given cluster) that are sputtered from the surface by high-energy ion impacts.Measurements of the sizes of these clusters yielded an inverse power-law distribution with an exponent of -2 that is independent of irradiating ion species and total sputtering yield.This inverse-square dependence indicates that these nanoclusters are produced when shock waves,generated by sub-surface displacement cascades,impact and ablate the surface.Such nanoparticles consist of simple fragments of the original surface,i.e.,ones that have not undergone any large thermal excursion.As discussed below,this "ion ablation" technique should therefore be useful for synthesizing nanoparticles of a wide variety of alloy compositions and phases.
机译:我们报告纳米颗粒的电子显微镜研究(500 <= n <= 10〜4,其中N是通过高能离子影响从表面溅射的给定簇中的原子数。这些簇的尺寸的衡量产生反向动力法分布,其指数为-2,其与照射离子物质和总溅射产率无关。该逆方依赖表明,当通过次表面位移级联时产生的冲击波产生这些纳米或产生这些纳米单元。烧蚀表面。血清纳米颗粒由原始表面的简单片段组成,即没有经过任何大的热偏移的片段。因此,该“离子消融”技术应适用于合成各种合金的纳米颗粒组成和阶段。

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