Eindhoven University of Technology, P.O. Box 513, 5600, MB, Eindhoven, The Netherlands.
Lab Chip. 2009 Dec 7;9(23):3413-21. doi: 10.1039/b908578e. Epub 2009 Sep 18.
We demonstrate advanced fluid manipulations using magnetic polymeric artificial cilia on the walls of a microfluidic channel. In nature, cilia are little hairs covering the surface of micro-organisms which enable them to manipulate a fluid on the micro-scale. The asymmetric movement of natural cilia is crucial to obtain a net fluid flow. We have developed a ferromagnetic polymer made from iron nanoparticles and polydimethylsiloxane, and describe a process that can structure the material into high aspect ratio lying artificial cilia with a length of 300 microm. These artificial cilia were actuated with a homogeneous rotating magnetic field (micro(0)H < 50 mT) generated with a compact external electromagnet. An asymmetric movement involving torsion could be created when the cilia were provided with a remanent magnetisation perpendicular to the plane of rotation of the magnetic field vector. The artificial cilia could be actuated in fluid up to a frequency of approximately 50 Hz. In an aqueous solution in a microfluidic chamber we were able to generate rotational as well as translational fluid movements with fluid velocities up to approximately 0.5 mm s(-1).
我们展示了使用微流道壁上的磁性聚合物人造纤毛进行的高级流体操纵。在自然界中,纤毛是覆盖微生物表面的细小毛发,使它们能够在微观尺度上操纵流体。天然纤毛的不对称运动对于获得净流体流动至关重要。我们已经开发出一种由铁纳米粒子和聚二甲基硅氧烷制成的铁磁聚合物,并描述了一种可以将材料结构化为具有 300 微米长的高纵横比的人造纤毛的工艺。这些人造纤毛可以用紧凑的外部电磁铁产生的均匀旋转磁场(微(0)H < 50 mT)来驱动。当纤毛具有垂直于磁场矢量旋转平面的剩余磁化时,可以产生涉及扭转的不对称运动。人造纤毛可以在流体中以高达约 50 Hz 的频率驱动。在微流控室内的水溶液中,我们能够产生旋转和平移的流体运动,流体速度高达约 0.5 毫米/秒。