纳秒激光脉冲诱导Ag:TiO2薄膜直接彩色印刷

Van Doan Le, Balint Eles, N. Dalloz, Manuel A. Flores Figueroa, F. Vocanson, Y. Lefkir, N. Destouches
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引用次数: 0

摘要

激光是在纳米尺度上修饰材料以获得理想光学性能的有效工具。当处理金属-介电纳米复合薄膜时,激光可以在大面积上触发不同的机制来控制这些材料的统计特性。纳米粒子可以根据微米宽区域的自组织机制进行重塑、调整大小和排序。在激光诱导温度升高的情况下,介质晶体相位和薄膜厚度会发生变化。这些机制导致薄膜光学性质的变化。本文研究了Ag:TiO2纳米复合薄膜在纳秒激光扫描下的结构变化及其光学性能。我们特别关注不同观测模式下的颜色特性,如反射和衍射。这些颜色是由金属纳米粒子局部表面等离子体共振的吸收、纳米粒子组合的衍射以及入射波、反射波和导波之间的干涉(后者通过在纳米粒子上的散射而被激发)共同产生的。形态学表征揭示了纳米颗粒的大小、密度和排列在衍射向二向色行为转变中的作用。此外,还绘制了一幅全彩图像,以展示该技术在从设计、着色到信息存储和数据安全等工业应用中的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Direct color printing on Ag:TiO2 thin films induced by nanosecond laser pulses
Laser can be an effective tool to modify materials at the nanoscale in order to achieve desired optical properties. When dealing with metal-dielectric nanocomposite thin films, different mechanisms can be triggered by laser on large areas to control the statistical properties of these materials. Nanoparticles can be reshaped, resized and ordered according to self-organization mechanisms that set over micrometer wide areas. The dielectric crystal phase and film thickness can be changed upon laser-induced temperature rise. These mechanisms lead to changes in the optical properties of the films. Here, we investigate the structural changes that a Ag:TiO2 nanocomposite thin film undergoes under nanosecond laser scanning and their resulting optical properties. We especially focus on the color properties in different modes of observation such as reflection and diffraction. The colors originate from combination of absorption by the localized surface plasmon resonance of metallic nanoparticles, diffraction by the nanoparticles assemblies and interference between the incident, reflected and guided waves, the latter being excited by scattering on the nanoparticles. The morphological characterizations unveil the role of nanoparticle size, density and arrangement on the transition from a diffractive to a dichroic behavior. A full color image is also drawn to demonstrate the potential of the technique in industrial applications ranging from design, coloration to information storage and data security.
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