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Nanoparticle formation in a cavitation bubble after pulsed laser ablation in liquid studied with high time resolution small angle x-ray scattering

机译:用高时间分辨率小角度X射线散射研究了脉冲激光烧蚀液体后空化气泡中的纳米颗粒形成

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We investigated nanoparticle formation after pulsed laser ablation in liquid using time-resolved small angle x-ray scattering. Laser ablation of a gold target in water induces a cavitation bubble in which two different particle species could be identified at maximum bubble extension: (i) primary particles of about 8–10 nm diameter, which show a smooth concentration gradient starting from the target and can also be found outside the cavitation bubble in the free liquid and (ii) secondary particles in the range of 45 nm diameter which have highest concentration in the upper part of the cavitation bubble but do not penetrate into the liquid.
机译:我们使用时间分辨的小角度X射线散射研究了脉冲激光烧蚀在液体中后的纳米颗粒形成。激光烧蚀水中的金靶会引起空化气泡,其中可以在最大气泡扩展处识别出两种不同的粒子:(i)直径约8–10 nm的一次粒子,从目标开始显示出平滑的浓度梯度,并且在空化气泡的外部,也可以在自由液体中找到(ii)直径在45 nm范围内的二次粒子,这些粒子在空化气泡的上部具有最高的浓度,但不会渗透到液体中。

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