论文标题
在半连续银膜上带有飞秒激光的无光刻等离激元颜色印刷
Lithography-free plasmonic color printing with femtosecond laser on semicontinuous silver films
论文作者
论文摘要
具有半连续金属膜的等离子体颜色打印是一种无印刷,不倒入和环境友好的鲜艳颜色的方法。这样的膜由金属纳米颗粒组成,金属纳米颗粒在光照射下在不同波长的情况下取决于纳米颗粒的大小和形状。为了实现实验证明的结构,该结构已通过更宽的颜色范围和提高稳定性进行了优化,可变Ag半连续金属膜被沉积在具有亚波长 - 厚的介电隔离器的金属镜上。然后引入了飞秒激光后处理,以通过从蓝色变为绿色,红色和黄色的光谱变化来扩展颜色范围。解决了结构的长期稳定性和耐用性,以通过优化的过涂层介电层实现非倒入颜色。所提出的设计的厚度在100纳米的订单上,并且可以沉积在任何基板上。这些结构在反射中产生了各种持久的颜色,可以应用于现实生活中的艺术或技术应用,其空间分辨率为0.3 mm或更少。
Plasmonic color printing with semicontinuous metal films is a lithography-free, non-fading, and environment-friendly method of generation of bright colors. Such films are comprised of metal nanoparticles, which resonate at different wavelengths upon light illumination depending on the size and shape of the nanoparticles. To achieve an experimentally demonstrated structure that was optimized in terms of broader color range and increased stability, variable Ag semicontinuous metal films were deposited on a metallic mirror with a sub-wavelength-thick dielectric spacer. Femtosecond laser post-processing was then introduced to extend the color gamut through spectrally induced changes from blue to green, red, and yellow. Long-term stability and durability of the structures were addressed to enable non-fading colors with an optimized overcoating dielectric layer. The thickness of the proposed designs is on the order of 100 nanometers, and it can be deposited on any substrate. These structures generate a broad range of long-lasting colors in reflection that can be applied to real-life artistic or technological applications with a spatial resolution on the order of 0.3 mm or less.