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Ferrofluid Microdroplet Splitting for Population‐Based Microfluidics and Interfacial Tensiometry

机译:基于人口的微流控和界面张力法的铁磁微滴分裂

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摘要

Ferrofluids exhibit a unique combination of liquid properties and strong magnetic response, which leads to a rich variety of interesting functional properties. Here, the magnetic‐field‐induced splitting of ferrofluid droplets immersed in an immiscible liquid is presented, and related fascinating dynamics and applications are discussed. A magnetic field created by a permanent magnet induces instability on a mother droplet, which divides into two daughter droplets in less than 0.1 s. During the splitting process, the droplet undergoes a Plateau–Rayleigh‐like instability, which is investigated using high‐speed imaging. The dynamics of the resulting satellite droplet formation is shown to depend on the roughness of the supporting surface. Further increasing the field results in additional splitting events and self‐assembly of microdroplet populations, which can be magnetically actuated. The effects of magnetization and interfacial tension are systematically investigated by varying magnetic nanoparticles and surfactant concentrations, and a variety of outcomes from labyrinthine patterns to discrete droplets are observed. As the splitting process depends on interfacial tension, the droplet splitting can be used as a measure for interfacial tension as low as 0.1 mN m . Finally, a population‐based digital microfluidics concept based on the self‐assembled microdroplets is presented.
机译:铁磁流体表现出液体特性和强大的磁响应的独特组合,从而产生了多种有趣的功能特性。在此,介绍了磁场诱导的浸没在不混溶液体中的铁磁流体液滴的分裂,并讨论了相关的令人着迷的动力学和应用。永磁体产生的磁场会在母滴中引起不稳定,该母滴会在不到0.1 s的时间内分成两个子滴。在分裂过程中,液滴经历了高原-瑞利样的不稳定性,可以使用高速成像技术对其进行研究。所产生的卫星液滴形成的动力学显示为取决于支撑表面的粗糙度。进一步增加磁场会导致更多的分裂事件和微滴种群的自组装,这可以通过磁力驱动。通过改变磁性纳米颗粒和表面活性剂的浓度,系统地研究了磁化和界面张力的影响,并且观察到了从迷宫图案到离散液滴的各种结果。由于分裂过程取决于界面张力,因此液滴分裂可以用作低至0.1 mN m的界面张力的量度。最后,提出了基于自组装微滴的基于人群的数字微流控概念。

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