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Fabrication of periodic nanostructures by single-point diamond turning with focused ion beam built tool tips

机译:通过单点金刚石车削和聚焦离子束内置工具尖端制造周期性纳米结构

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摘要

Periodic nanostructures have been widely used on emerging nano-products such as plasmonic solar cell and nano-optics. However, lack of cost-effective fabrication techniques has become the bottleneck for commercialization of these nano-products. In this work, we develop a scale up approach to fabricate high-precision nanostructures in large area. In this method, a nano-scale single crystal diamond (SCD) tool is produced by focused ion beam (FIB) machining. The nano SCD tool is then further applied to cut periodic nanostructures using single-point diamond turning (SPDT). A divergence compensation method and surface topography generation model forms a deterministic FIB fabrication approach. It has been used to generate four periods of the required periodic nano-grating structures (with a minimal dimension of 150 nm) on a normal SCD tool tip and achieves 10 nm form accuracy. The contribution of the beam tail effect has also been evaluated by using the surface topography simulation method. The fabricated diamond tool is then applied to obtain nano-grating on an electroless nickel substrate in a total area of 5 × 2 mm2 through SPDT. The whole SPDT machine process only takes 2 min (with a material removal rate up to 1.8 × 104 μm3 s−1). Due to the elastic recovery that occurred upon the workpiece material, the practical cutting width is 13 nm smaller than the tool tip. The machining trial shows it is very promising to apply this scale up nanofabrication approach for commercialization of nano-products which possess period nanostructures.
机译:周期性纳米结构已被广泛用于新兴的纳米产品,如等离子体太阳能电池和纳米光学器件。然而,缺乏具有成本效益的制造技术已成为这些纳米产品商业化的瓶颈。在这项工作中,我们开发了一种放大方法来大面积制造高精度纳米结构。通过这种方法,通过聚焦离子束(FIB)加工生产了纳米级单晶金刚石(SCD)工具。然后,使用单点金刚石车削(SPDT)将纳米SCD工具进一步应用于切割周期性纳米结构。发散补偿方法和表面形貌生成模型形成了确定性的FIB制造方法。它已被用来在普通SCD工具刀尖上生成四个周期的所需周期性纳米光栅结构(最小尺寸为150 nm),并达到10 nm的形状精度。束尾效应的贡献也已通过使用表面形貌模拟方法进行了评估。然后将制造的金刚石工具应用于通过SPDT在化学镀镍基板上以5×2 mm2的总面积获得纳米光栅。整个SPDT机器过程仅需2分钟(材料去除率高达1.8×104μm3s-1)。由于发生在工件材料上的弹性恢复,实际切削宽度比刀头小13 nm。机加工试验表明,将这种规模化的纳米加工方法用于具有周期纳米结构的纳米产品的商业化非常有希望。

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