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High-Density Assembly of Micro-Dispersoids by Laser-Induced Bubble and Fluid Flow

机译:通过激光诱导的泡沫和流体流动的微分散体高密度组装

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A laser-induced micro-bubble and fluid flow can assemble dispersoids locally and rapidly by CW laser illumination to light absorptive materials in a suspension. However, the control method of such a process hasn't been well established. In this study, we tried to construct a quantitative analysis method based on the projection area of the assembled dispersoids and to clarify the factors for the control of the laser-induced assembly. As a result, it was clarified that adsorption of the amphiphile onto gas-liquid interface of the bubble/suspension plays an important role for the controllability. Particularly, we found that there is a high correlation between the projection area of the assembled dispersoids and its concentration under the controlled assembly. These findings are crucial not only for the control of the laser-induced assembly but also for the rapid concentration measurement techniques.
机译:激光诱导的微气泡和流体流动可以通过CW激光照射在悬浮液中的光吸收材料本地和快速地组装分散体。然而,这种过程的控制方法尚未确定。在这项研究中,我们尝试基于组装的分散体的投影区域构建定量分析方法,并阐明用于控制激光诱导的组件的因素。结果,澄清了两亲物在气泡/悬浮液的气液界面上的吸附在可控性下起重要作用。特别地,我们发现,在受控组件下组装的分散体的投影区域与其浓度之间存在高的相关性。这些发现对于对激光诱导的组件的控制而言,这些发现是至关重要的,而且对于快速浓度测量技术。

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