Kim Jaekyoung, Yoon Hyunsik
Department of Chemical Engineering, Seoul National University of Science & Technology, Seoul 01811, Korea.
Micromachines (Basel). 2018 Nov 3;9(11):569. doi: 10.3390/mi9110569.
The fabrication of nanoscale patterns over a large area has been considered important but difficult, because there are few ways to satisfy both conditions. Previously, visually tolerable tiling (VTT) for fabricating nanopatterns for optical applications has been reported as a candidate for large area fabrication. The essence of VTT is the inevitable stitching of the nanoscale optical component, which is not seen by the naked eye if the boundary is very narrow while the tiles are overlapped. However, it had been difficult to control the shape of the spread of liquid prepolymers in the previous work, and there was room for the development of tiling. Here, we propose a method for transferring various shapes of tiles, which can be defined with a shadow mask. The method of using a transparent shadow mask can provide a wide process window, because it allows the spreading of a liquid prepolymer to be more easily controlled. We optimize the coating condition of a liquid prepolymer and the ultraviolet (UV) exposure time. Using this method, we can attach tiles of various shapes without a significant visible trace in the overlapped region.
在大面积上制备纳米级图案一直被认为既重要又困难,因为很少有方法能同时满足这两个条件。此前,用于光学应用的纳米图案制备的视觉可容忍拼接(VTT)已被报道为大面积制备的一种候选方法。VTT的本质是纳米级光学组件的不可避免的拼接,如果边界非常窄且瓷砖重叠,肉眼是看不到的。然而,在之前的工作中,很难控制液态预聚物的铺展形状,并且拼接技术仍有发展空间。在此,我们提出一种转移各种形状瓷砖的方法,这些形状可以用荫罩来定义。使用透明荫罩的方法可以提供更宽的工艺窗口,因为它能使液态预聚物的铺展更容易控制。我们优化了液态预聚物的涂覆条件和紫外线(UV)曝光时间。使用这种方法,我们可以在重叠区域附着各种形状的瓷砖,且几乎没有明显可见的痕迹。