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Nanosecond-Laser Generation of Nanoparticles in Liquids: From Ablation through Bubble Dynamics to Nanoparticle Yield

机译:纳秒激光生成液体中的纳米颗粒:从泡沫动力学到纳米颗粒产率的消融

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摘要

A comprehensive picture of the nanosecond-laser generation of colloidal nanoparticles in liquids is nowadays the demand of their high-throughput industrial fabrication for diverse perspective biomedical, material science, and optoelectronic applications. In this study, using silicon as an example, we present a self-consistent experimental visualization and theoretical description of key transient stages during nanosecond-laser generation of colloidal nanoparticles in liquids: plasma-mediated injection of ablated mass into the liquid and driving the vapor bubble, finalized by the colloid appearance in the liquid. The explored fundamental transient stages envision the basic temporal and spatial scales, as well as laser parameter windows, for the demanded high-throughput nanosecond-laser generation of colloidal nanoparticles in liquids.
机译:如今,液体纳秒激光生成颗粒纳米粒子的全面图像如今,其高通量工业制造的需求,用于各种透视生物医学,材料科学和光电应用。在本研究中,使用硅作为示例,我们在液体纳秒 - 激光生成液体中的胶体纳米粒子的颈型纳米颗粒期间呈现自我一致的实验性能和理论描述:血浆介导的烧蚀质量进入液体并驱动蒸汽泡沫,最终液体的胶体外观。探索的基本瞬态阶段设想所需的高通量纳秒激光生成液体中所需的高通量纳秒激光生成的基本时间和空间尺度,以及激光参数窗口。

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