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A Rapid Thermal Nanoimprint Apparatus through Induction Heating of Nickel Mold

机译:感应加热镍模具的快速热纳米压印设备

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Thermal nanoimprint lithography is playing a vital role in fabricating microanostructures on polymer materials by the advantages of low cost, high throughput, and high resolution. However, a typical thermal nanoimprint process usually takes tens of minutes due to the relatively low heating and cooling rate in the thermal imprint cycle. In this study, we developed an induction heating apparatus for the thermal imprint with a mold made of ferromagnetic material, nickel. By applying an external high-frequency alternating magnetic field, heat was generated by the eddy currents and magnetic hysteresis losses of the ferromagnetic nickel mold at high speed. Once the external alternating magnetic field was cut off, the system would cool down fast owe to the small thermal capacity of the nickel mold; thus, providing a high heating and cooling rate for the thermal nanoimprint process. In this paper, nanostructures were successfully replicated onto polymer sheets with the scale of 4-inch diameter within 5 min.
机译:热纳米压印光刻技术具有低成本,高通量和高分辨率的优点,在聚合物材料上的微/纳米结构制造中起着至关重要的作用。然而,由于热压印循环中相对较低的加热和冷却速率,典型的热纳米压印工艺通常花费数十分钟。在这项研究中,我们开发了一种感应加热设备,用于用铁磁材料镍制成的模具进行热压印。通过施加外部高频交变磁场,铁磁镍模具的涡流和磁滞损耗高速产生热量。一旦外部交变磁场被切断,由于镍模的热容量小,系统将迅速冷却。因此,为热纳米压印工艺提供了较高的加热和冷却速率。在本文中,纳米结构已成功在5分钟内复制到直径为4英寸的聚合物薄板上。

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