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Light- and magnetically actuated FePt microswimmers

机译:光线和磁气驱动的扫描微倍

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Externally controlled microswimmers offer prospects for transport in biological research and medical applications. This requires biocompatibility of the swimmers and the possibility to tailor their propulsion mechanisms to the respective low Reynolds number environment. Here, we incorporate low amounts of the biocompatible alloy of iron and platinum (FePt) in its L1(0) phase in microstructures by a versatile one-step physical vapor deposition process. We show that the hard magnetic properties of L1(0) FePt are beneficial for the propulsion of helical micropropellers with rotating magnetic fields. Finally, we find that the FePt coatings are catalytically active and also make for Janus microswimmers that can be light-actuated and magnetically guided.
机译:外部控制的微型wimmers为生物研究和医学应用中的传输提供了前景。这需要游泳者的生物相容性,以及根据各自的低雷诺数环境调整推进机制的可能性。在这里,我们通过一种通用的一步物理气相沉积工艺,在微观结构的L1(0)相中加入少量的铁铂生物相容性合金(FePt)。我们发现,L1(0)FePt的硬磁特性有利于旋转磁场下螺旋微丸器的推进。最后,我们发现FePt涂层具有催化活性,也有助于Janus微wimmers的光驱动和磁引导。

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