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Fabrication method of moth-eye using UV-curable polydimethylsiloxane with vitrification by vacuum ultraviolet light

机译:利用紫外线紫外光固化的可紫外线固化的聚二甲基硅氧烷的蛾眼制造方法

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Moth-eye, which is the nanoscale tapered pillars array and has a remarkable anti-reflection property, has been paid more attention to be coated on optical materials for high performance anti-reflection surface. However, there are some problems in conventional fabrication method of moth-eye structure, such as labor-intensive mold master for nanoimprint fabrication. In order to overcome these problems, we demonstrated a novel fabrication method of moth-eye structure, which is possible to apply on the large area of non-flat surfaces at low cost by printing (stamping). The process was realized with an UV-curable silicone elastomer and glass transformation from silicone elastomer to SiO by vacuum-ultraviolet light (VUV) exposure. As a result, the fabricated PDMS-made moth-eye showed 94.3 % transparency and the vitrified SiO one showed 95.5 %, compared with plain surface of 92.0 % in the visible range from 470nm to 700nm.
机译:蛾眼是一种纳米级的锥形柱阵列,具有显着的抗反射性能,因此,人们越来越重视在光学材料上涂覆高性能抗反射表面。然而,在传统的蛾眼结构的制造方法中存在一些问题,例如用于纳米压印制造的劳动密集型模具。为了克服这些问题,我们展示了一种新颖的蛾眼结构制造方法,该方法可以通过印刷(压印)以低成本应用于大面积的非平坦表面。该过程是通过可紫外线固化的有机硅弹性体和通过真空紫外光(VUV)曝光将玻璃从有机硅弹性体转变为SiO来实现的。结果,在470nm至700nm的可见光范围内,由PDMS制得的蛾眼的透明性为94.3%,玻璃化的SiO 1的透明性为95.5%,而平整表面为92.0%。

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