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High-yield fabrication of 60nm Permalloy nanodiscs in well-defined magnetic vortex state for biomedical applications

机译:在生物医学应用中以明确的磁涡态高产量制造60nm坡莫合金纳米盘

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摘要

Permalloy disc structures in magnetic vortex state constitute a promising new type of magnetic nanoparticles for biomedical applications. They present high saturation magnetisation and lack of remanence, which ease the remote manipulation of the particles by magnetic fields and avoid the problem of agglomeration, respectively. Importantly, they are also endowed with the capability of low-frequency magneto-mechanical actuation. This effect has already been shown to produce cancer cell destruction using functionalized discs, about 1 mu m in diameter, attached to the cell membrane. Here, Permalloy nanodiscs down to 60 nm in diameter are obtained by hole-mask colloidal lithography, which is proved to be a cost-effective method for the uniform patterning of large substrate areas, with a high production yield of nanostructures. The characterisation of the magnetic behaviour of the nanodiscs, complemented with micromagnetic simulations, confirms that they present a very well defined magnetic vortex configuration, unprecedented, to our knowledge, for nanostructures of this size prepared by a high-yield method. The successful detachment of the gold-covered nanodiscs from the substrate is also demonstrated by the use of sacrificial layers.
机译:处于磁涡状态的坡莫合金圆盘结构构成了一种有前途的新型生物医学应用磁性纳米颗粒。它们呈现出高饱和磁化强度和剩磁,分别减轻了磁场对粒子的远程操纵并避免了结块问题。重要的是,它们还具有低频磁机械致动的能力。已经表明,使用附着在细胞膜上的直径约1μm的功能化椎间盘,这种作用会破坏癌细胞。在此,通过孔掩膜胶体光刻技术获得了直径低至60 nm的坡莫合金纳米盘,这被证明是一种经济有效的方法,可以对大面积的基板进行均匀的构图,并且具有很高的纳米结构产量。纳米圆片的磁行为特征与微磁模拟相辅相成,证实了它们呈现出非常清晰的磁涡旋构型,据我们所知,对于高尺寸方法制备的这种尺寸的纳米结构,这是前所未有的。牺牲层的使用也证明了金覆盖的纳米圆盘从基材上的成功分离。

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