论文标题

铁流体水性两相系统具有超大界面张力,不稳定性和图案形成

Ferrofluidic aqueous two-phase system with ultralow interfacial tension, instabilities and pattern formation

论文作者

Rigoni, Carlo, Harnist, Bent, Beaune, Grégory, Timonen, Jaakko V. I.

论文摘要

铁氟烷是由磁性纳米颗粒组成的强烈磁性流体,这些纳米颗粒分散在载体流体中。除了技术应用外,他们还倾向于在受外部静态和动态磁场进行外观时形成美丽而有趣的模式。大多数模式发生在由两种流体组成的系统中:一种铁氟和一个非磁性(油,空气等),其中流体流体界面变形作为对磁场的响应。通常,流体完全不混合,因此该系统中的界面能量非常大。在这里,我们表明,可以使用不兼容的聚合物的相分离来设计完全水性的铁流体系统。这种连续的水系统允许超大的界面张力(降至1 $μ$ n/m),几乎消失在三个相接触线上。我们证明了与系统的正常场不稳定,并专注于典型的$ \ sim $ 10毫米大小到$ \ sim $ \ sim $ 200 $ 200 $μ$ m。正常场不稳定的特征是厚度与图案长度相当的厚度毛细管。该系统铺平了方向有趣的物理学的方式,例如磁性不稳定性与热毛细管波之间的相互作用,并提供了一种评估极小界面张力的方法。

Ferrofluids are strongly magnetic fluids consisting of magnetic nanoparticles dispersed in a carrier fluid. Besides their technological applications, they have a tendency to form beautiful and intriguing patterns when subjected to external static and dynamic magnetic fields. Most of the patterns occur in systems consisting of two fluids: one ferrofluidic and one non-magnetic (oil, air, etc.), wherein the fluid-fluid interface deforms as a response to magnetic fields. Usually, the fluids are completely immiscible and so the interfacial energy in this systems is very large. Here we show that it is possible to design a fully aqueous ferrofluid system by using phase separation of incompatible polymers. This continuous aqueous system allows an ultralow interfacial tension (down to 1 $μ$N/m) and nearly vanishing pinning at three phase contact lines. We demonstrate the normal-field instability with the system and focus on the miniaturization of the pattern length from the typical $\sim$10 mm size down to $\sim$200 $μ$m. The normal-field instability is characterized in glass capillaries of thickness comparable to the pattern length. This system paves way towards interesting physics such as the interaction between magnetic instabilities and thermal capillary waves and offers a way to evaluate extremely small interfacial tensions.

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