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Magnetic Field-Driven Convection for Directed Surface Patterning of Colloids

机译:用于胶体的定向表面图案的磁场驱动对流

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Drying sessile droplets is a promising route to transform colloidal dispersions into surface coatings,which are widely used in material design and biochemical detection.However,directing the assembly of the particles within drying droplets and achieving surface patterns beyond the well-known coffee-ring formation remain a challenge.Here,we present a new principle of directing the assembly of nonmagnetic colloidal particles dispersed in a magnetic fluid and generating unusual surface patterns.We use the ability of ferrofluids to change phases with the application of magnetic fields to program the assembly of nonmagnetic microparticles present in drying sessile droplets.We show that in the absence of external magnetic field,the superparamagnetic nanoparticles in the magnetic fluid are spontaneously transported to the droplet edge because of solvent evaporation.This nanoparticle transport leads to the formation of nanoparticle-rich edge and nanoparticle-depleted center of the drying droplet.Upon the application of a uniform external magnetic field,the asymmetry in the magnetic nanoparticle distribution drives a magnetostatic convection and finger-like instability from the droplet edge to the center.This magnetic microconvection from droplet edge-tocenter reverses the particle transport from center-to-edge,well-known for drying droplets in the absence of external field.We use this magnetostatic microconvection to assemble secondary nonmagnetic microspheres in droplets,overwriting ring formation and direct their assembly into four distinct kinetically stable states.The method presented here offers an active control over the colloidal assembly achieved by drying sessile droplets and thus enables a new route for fabricating complex patterns and functional surface coating.
机译:干燥术液滴是将胶体分散体变成表面涂层的有希望的途径,这些途径被广泛用于材料设计和生化检测。但是,在干燥液滴中引导颗粒内的组装,并在众所周知的咖啡环形成之外实现表面图案仍然是一个挑战。我们提出了一种引导分散在磁性流体中的非磁性胶体颗粒组装的新原理并产生异形表面图案。我们使用铁磁流体的能力改变阶段的磁场来编程组件。存在于干燥的无磁性微粒中的干燥柄液滴。我们表明,在没有外部磁场的情况下,由于溶剂蒸发,磁性流体中的超顺磁性纳米颗粒自发地运输到液滴边缘。纳米粒子转运导致富含纳米颗粒的边缘的形成和纳米粒子耗尽的干燥液滴中心et.Upon施加均匀的外部磁场,磁性纳米粒子分布中的不对称性驱动从液滴边缘到中心的静静压对流和指状不稳定性。来自液滴边缘的磁性微电路 - Forcenter从中心反转粒子运输-to-to-edge,众所周知,在没有外部场的情况下干燥液滴。我们使用该磁静电微控制在液滴中组装二次非磁性微球,重写环形成并将其组装引导至四个不同的动力学稳定状态。此处提供的方法提供通过干燥术滴液滴实现的胶体组件的主动控制,从而使得能够制造复杂图案和功能表面涂层的新途径。

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