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Fabrication of Nickel Nanostructure Arrays Via a Modified Nanosphere Lithography

机译:镍纳米结构阵列通过修改纳米球光刻技术的制造

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摘要

In this paper, we present a modified nanosphere lithographic scheme that is based on the self-assembly and electroforming techniques. The scheme was demonstrated to fabricate a nickel template of ordered nanobowl arrays together with a nickel nanostructure array-patterned glass substrate. The hemispherical nanobowls exhibit uniform sizes and smooth interior surfaces, and the shallow nanobowls with a flat bottom on the glass substrate are interconnected as a net structure with uniform thickness. A multiphysics model based on the level set method (LSM) was built up to understand this fabricating process by tracking the interface between the growing nickel and the electrolyte. The fabricated nickel nanobowl template can be used as a mold of long lifetime in soft lithography due to the high strength of nickel. The nanostructure–patterned glass substrate can be used in optical and magnetic devices due to their shape effects. This fabrication scheme can also be extended to a wide range of metals and alloys.
机译:在本文中,我们提出了一种基于自组装和电铸技术的改进的纳米球光刻方案。证明该方案可制造有序纳米碗阵列的镍模板以及镍纳米结构阵列图案的玻璃基板。半球形纳米碗具有均匀的尺寸和光滑的内表面,并且玻璃基板上具有平坦底部的浅纳米碗相互连接成具有均匀厚度的网状结构。建立了一个基于能级集方法(LSM)的多物理场模型,通过跟踪生长的镍和电解质之间的界面来理解该制造过程。由于镍的高强度,所制造的镍纳米碗模板可以用作软光刻中的长寿命模具。纳米结构图案的玻璃基板因其形状效应而可用于光学和磁性设备。该制造方案还可以扩展到广泛的金属和合金。

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