论文标题

通过动态自组装晶格在流体界面上磁性微粒的集体运输

Collective Transport of Magnetic Microparticles at a Fluid Interface through Dynamic Self-Assembled Lattices

论文作者

Martínez-Pedrero, Fernando, Ortega, Francisco, Rubio, Ramón G., Calero, Carles

论文摘要

在调制能量景观中,动力实体在生物学,胶体科学和固态物理学中的一系列现象中起着重要作用。在这里,引入了一种易于实现的策略,允许在流体流体界面上进行微粒的集体和受监控的运输。吸附的磁性微粒是按时间依赖性的磁性电位进行的,该电位是由不同尺寸磁性颗粒的动态自组装晶格产生的。在这样的二元系统中,应用场的突然重新定位触发了有吸引力和排斥性配置之间的快速交换,从而使载体通过晶格的弹道传递。随着通气实体的数量增加,在达到最大值之前,诱导的电流增加,而加载的界面逐渐显示双向传输。可以通过施加的领域调整所述方法,并利用对液体表面上吸附的分子的监测引导,胶体混合物的隔离,光子晶体中缺陷的诱导运动或新的自组装微型机器人的设计。

The transport of motile entities across modulated energy landscapes plays an important role in a range of phenomena in biology, colloidal science and solid-state physics. Here, an easily implementable strategy that allows for the collective and monitored transport of microparticles at fluid-fluid interfaces is introduced. Adsorbed magnetic microparticles are carried on time-dependent magnetic potentials, generated by a dynamic self-assembled lattice of different-sized magnetic particles. In such binary systems, the sudden reorientation of the applied field triggers the rapid exchange between attractive and repulsive configurations, enabling for the ballistic transfer of the carriers through the lattice. As the number of motile entities increases, the induced current increases, before reaching a maximum, while the loaded interface gradually displays bidirectional transport. The described methodology can be tuned through the applied field and exploited for the monitored guidance of adsorbed molecules on liquid surfaces, the segregation of colloidal mixtures, the induced motion of defects in photonic crystals or the design of new self-assembled microrobots.

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