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Magnetically tunable bidirectional locomotion of a self-assembled nanorod-sphere propeller

机译:自组装纳米棒球面螺旋桨的磁可调谐双向运动

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摘要

Field-driven direct assembly of nanoscale matter has impact in disparate fields of science. In microscale systems, such concept has been recently exploited to optimize propulsion in viscous fluids. Despite the great potential offered by miniaturization, using self-assembly to achieve transport at the nanoscale remains an elusive task. Here we show that a hybrid propeller, composed by a ferromagnetic nanorod and a paramagnetic microsphere, can be steered in a fluid in a variety of modes, from pusher to puller, when the pair is dynamically actuated by a simple oscillating magnetic field. We exploit this unique design to build more complex structures capable of carrying several colloidal cargos as microscopic trains that quickly disassemble at will under magnetic command. In addition, our prototype can be extended to smaller nanorods below the diffraction limit, but still dynamically reconfigurable by the applied magnetic field.
机译:场驱动的纳米级物质的直接组装对不同的科学领域产生了影响。在微型系统中,最近已采用这种概念来优化粘性流体的推进。尽管小型化具有巨大的潜力,但是使用自组装实现纳米级的运输仍然是一项艰巨的任务。在这里,我们显示了由铁磁纳米棒和顺磁性微球组成的混合螺旋桨,当通过简单的振荡磁场动态地驱动该对时,可以以多种模式操纵流体,从推杆到拉杆。我们利用这种独特的设计来构建更复杂的结构,从而能够承载多种胶体货物,就像微观火车一样,它们可以在磁性命令下迅速拆卸。此外,我们的原型可以扩展到低于衍射极限的较小纳米棒,但仍可以通过施加的磁场进行动态重新配置。

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