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Active Periodic Magnetic Nanostructures with High Aspect Ratio and Ultrahigh Pillar Density

机译:具有高纵横比和超高柱密度的主动周期磁性纳米结构

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Magnetically actuated micro/nanoscale pillars have attracted significant research interest recently because of their dynamic properties. These structures can be used for various applications, such as dry adhesion, cell manipulation, and sensors or actuators in microfluidics. Magnetically actuated structures can be fabricated by mixing magnetic particles and polymers to yield a favorable combination of magnetic permeability and mechanical compliance. However, the pillar density of demonstrated structures is relatively low, which limits the potential applications in active surface manipulation of microscale objects. Here, we demonstrate active periodic nanostructures with a pillar density of 0.25 pillar/mu m(2), which is the highest density for magnetically actuated pillars so far. Having a structure period of 2 mu m, diameter of 600 nm, and high aspect ratio of up to 11, this structure can be magnetically actuated with a displacement of up to 200 nm. The behaviors of the pillars under various cyclic actuation modes have been characterized, demonstrating that the actuation can be well controlled. This work can find potential applications in particle manipulation and tunable photonic elements.
机译:由于其动态性质,磁性致动的微/纳米级支柱最近引起了显着的研究兴趣。这些结构可用于各种应用,例如干粘附,细胞操纵和微流体中的传感器或致动器。可以通过混合磁性颗粒和聚合物来制造磁性致动结构,得到磁导率和机械顺应性的有利组合。然而,所示结构的柱密度相对较低,这限制了微观物体的主动表面操纵中的潜在应用。这里,我们证明了具有0.25支柱/ mu m(2)的柱密度的主动周期性纳米结构,这是磁性致动柱的最高密度。具有2μm,直径为600nm的结构周期,高达11的高纵横比,该结构可以磁性地致动,位移高达200nm。已经表征了各种循环致动模式下支柱的行为,表明致动可以很好地控制。这项工作可以在粒子操纵和可调谐光子元素中找到潜在的应用。

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