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Nanoshaping of glass forming metallic liquids by stretching: evading lithography

机译:通过拉伸形成金属液体的玻璃纳米杨:逃避光刻

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Lithography-free nanomanufacturing by elongation and fracture of glass forming metallic liquid is presented. The viscous metallic liquid confined in a cavity is laterally downsized to nanoscale by stretching. The extent of size-reduction can be controlled by tuning the active volume of liquid and the viscous and capillary stresses. Very high aspect-ratio metal nanostructures can be fabricated without using lithography or expensive molds. A systematic study is performed using glass forming Pt-Cu-Ni-P alloy to understand the effects of viscosity, surface tension, pulling velocity, and cavity size on the evolution of cylindrical liquid column under tension. The results are quantitatively described using a phenomenological model based on lubrication theory and surface tension induced breakup of liquid filaments. A new manufacturing approach based on variable pulling velocity and/or spinning of metallic liquid is proposed for fabrication of complex geometries.
机译:通过伸长和玻璃形成金属液体的伸长率和断裂的无光刻纳米成制造。 通过拉伸,腔内限制在腔中的粘性金属液体横向缩小到纳米级。 可以通过调节液体和粘性和毛细管应力的活性体积来控制尺寸减少程度。 可以在不使用光刻或昂贵的模具的情况下制造非常高的纵横比金属纳米结构。 使用玻璃形成PT-Cu-Ni-P合金来进行系统研究,以了解粘度,表面张力,拉速和腔体大小在张力下圆柱形液柱演变的影响。 使用基于润滑理论的现象学模型和表面张力诱导液体细丝分离的现象学模型来定量描述结果。 提出了一种基于可变拉动速度和/或金属液体纺纱的新的制造方法,用于制造复杂几何形状。

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