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An angled nano-tunnel fabricated on poly(methyl methacrylate) by a focused ion beam

机译:通过聚焦离子束在聚甲基丙烯酸甲酯上制成的成角度的纳米隧道

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Angled nano-scale tunnels with high aspect ratio were fabricated on poly(methyl methacrylate) (PMMA) using a focused ion beam (FIB). The fabrication parameters such as ion fluence, incidence angle, and acceleration voltage of the Ga~+ ion beam were first studied on the PMMA surface to explore the formation of the nano-scale configurations such as nano-holes and cones with diameter in the range of 50-150 nm at an ion beam acceleration voltage of 5-20 kV. It was also found that the PMMA surface exposed to FIB was changed into an amorphous graphitic structure. Angled nano-scale tunnels were fabricated with high aspect ratio of 700-1500 nm in depth and 60 nm in mean diameter at an ion beam acceleration voltage of 5 kV and under a specific ion beam current. The angle of the nano-tunnels was found to follow the incident angle of the ion beam tilted from 0° to 85°, which has the potential for creating a mold for anisotropic adhesives by mimicking the hairs on a gecko's feet.
机译:使用聚焦离子束(FIB)在聚甲基丙烯酸甲酯(PMMA)上制造了具有高纵横比的成角度的纳米尺度隧道。首先在PMMA表面上研究了Ga〜+离子束的离子通量,入射角和加速电压等制造参数,以探索纳米尺度结构的形成,例如直径范围在10纳米至50纳米的锥孔。在5-20 kV的离子束加速电压下的50-150 nm波长。还发现暴露于FIB的PMMA表面变成无定形石墨结构。在5 kV的离子束加速电压和特定的离子束电流下,制造了深度深700-1500 nm,平均直径高60 nm的成角度的纳米级隧道。发现纳米隧道的角度遵循从0°倾斜到85°的离子束的入射角,这有可能通过模仿壁虎脚上的头发来制造各向异性粘合剂的模具。

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