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Laser‐Induced Nanodroplet Injection and Reconfigurable Double Emulsions with Designed Inner Structures

机译:激光诱导的纳米液滴注射和可重配置的双层乳液具有设计的内部结构

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摘要

Microfabrication of complex double emulsion droplets with controlled substructures, which resemble biological cells, is an important but a highly challenging subject. Here, a new approach is proposed based on laser‐induced injection of water nanodroplets into a liquid crystal (LC) drop. In contrast to the conventional top‐down microfluidic fabrication, this method employs a series of bottom‐up strategies such as nanodroplet injection, spontaneous and assisted coalescence, elastically driven actuation, and self‐assembly. Each step is controlled precisely by adjusting the laser beam, interfacial tension, and its gradients, surface anchoring, and elasticity of the LC. Whispering gallery mode illumination is used to monitor the injection of droplets. A broad spectrum of double emulsions with a predesigned hierarchical architecture is fabricated and reconfigured by temperature, laser‐induced coalescence, and injection. The proposed bottom‐up method to produce customized microemulsions that are responsive to environmental cues can be used in the development of drug delivery systems, biosensors, and functional soft matter microstructures.
机译:具有受控子结构的类似于生物细胞的复杂双乳液液滴的微细加工是一个重要但极富挑战性的课题。在此,基于激光诱导的水纳米滴注入液晶(LC)液滴中,提出了一种新方法。与常规的自上而下的微流体制造相反,此方法采用了一系列自下而上的策略,例如纳米液滴注入,自发和辅助合并,弹性驱动的驱动力以及自组装。通过调整激光束,界面张力及其梯度,表面固定和LC弹性,可以精确控制每个步骤。细语画廊模式照明用于监视液滴的注入。通过温度,激光诱导的聚结和进样,可以制造和重新配置具有预先设计的分级体系结构的多种双乳化液。建议的自下而上的方法来生产可响应环境提示的定制微乳液,可用于药物输送系统,生物传感器和功能性软物质微结构的开发。

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