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A universal approach for template-directed assembly of ultrahigh density magnetic nanodot arrays

机译:模板定向组装超高密度磁性纳米点阵列的通用方法

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摘要

L1_0 ordered alloys, such as FePt, CoPt and FePd alloys with high magnetocrystalline anisotropy, have attracted much attention due to their potential applications in ultrahigh density data storage. The assembly or organization of nanoparticle arrays is necessary for device application. A facile and general method to fabricate highly ordered ferromagnetic nanostructure arrays was demonstrated. It is found that simple oxygen plasma can make a hydrophilic polymer template, which would easily integrate with the widely used spin-coating process. With simple block copolymer lithography and spin-coating process, uniform ferromagnetic nanoparticle arrays can be easily fabricated over a large area. It is also significant that a very high coercivity up to 10 kOe was obtained in CoPt nanodot arrays. This method can find attractive applications in ultrahigh density storage media.
机译:L1_0有序合金,例如具有高磁晶各向异性的FePt,CoPt和FePd合金,由于其在超高密度数据存储中的潜在应用而备受关注。纳米粒子阵列的组装或组织对于设备应用是必需的。证明了一种简便而通用的方法来制造高度有序的铁磁纳米结构阵列。发现简单的氧等离子体可以制备亲水性聚合物模板,其可以容易地与广泛使用的旋涂工艺结合。通过简单的嵌段共聚物光刻和旋涂工艺,可以轻松地在大面积上制造均匀的铁磁纳米颗粒阵列。同样重要的是,在CoPt纳米点阵列中获得了高达10 kOe的非常高的矫顽力。这种方法可以在超高密度存储介质中找到有吸引力的应用。

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