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Bubble dynamics in metal nanoparticle formation by laser ablation in liquid studied through high-speed laser stroboscopic videography

机译:高速激光频闪摄像技术研究液体中激光烧蚀形成金属纳米粒子中的气泡动力学

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Laser ablation in liquid (LAL) is utilized in many applications, such as the fabrication of nanoparticles, laser cleaning and laser peening. We have developed a high-speed laser stroboscopic videography system that enables observations at intervals of 1 mu s. Using this imaging system, we investigated the dynamics of cavitation bubbles induced by LAL to elucidate the timing and location of nanoparticle formation and dispersion into the surrounding liquid. The initial bubble demonstrated a well-defined, smooth boundary during its growth and shrinkage. Although previous studies have reported the ejection of particles at the boundary of the bubble, this was not observed in our images. Intermixing between the gas phase of the bubble and the surrounding liquid occurred when the first bubble collapsed. Jet-like shadows were recorded during LAL in water after multiple-pulse irradiation, but were not observed in freshly filled water that had not yet been irradiated. These shadows disappeared within 10 vs and are postulated to be micro-bubbles induced by interactions between nanoparticles suspended in the water and the incoming laser beam. (C) 2015 Elsevier B.V. All rights reserved.
机译:液体中的激光烧蚀(LAL)被用于许多应用中,例如纳米颗粒的制造,激光清洁和激光喷丸。我们已经开发了一种高速激光频闪摄像系统,能够以1 s s的间隔进行观察。使用该成像系统,我们研究了由LAL引起的空化气泡的动力学,以阐明纳米颗粒形成和分散到周围液体中的时间和位置。初始气泡在其生长和收缩过程中显示出界限分明的平滑边界。尽管以前的研究已经报道了气泡边界处的粒子喷射,但在我们的图像中并未观察到。当第一个气泡破裂时,气泡的气相与周围的液体发生混合。 LAL期间在多脉冲照射后的水中记录到喷射状阴影,但在尚未照射的新鲜填充水中未观察到。这些阴影在10 vs内消失,并推测是由悬浮在水中的纳米粒子与入射激光束之间的相互作用引起的微气泡。 (C)2015 Elsevier B.V.保留所有权利。

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