Oh Harim, Lee Jeeyoung, Seo Minseok, Baek In Uk, Byun Ji Young, Lee Myeongkyu
Department of Materials Science and Engineering , Yonsei University , Seoul 120-749 , Korea.
Materials Architecture Research Center , Korea Institute of Science and Technology , Seoul 02792 , Korea.
ACS Appl Mater Interfaces. 2018 Nov 7;10(44):38368-38375. doi: 10.1021/acsami.8b13675. Epub 2018 Oct 26.
Plasmonic color laser printing has several advantages over pigment-based technology, including the absence of ink and toner and the production of nonfading colors. However, the current printing method requires a template that should be prepared via nanofabrication processes, making it impractical for large-area color images. In this study, we show that laser-induced dewetting of metal thin films by a nanosecond pulsed laser can be effectively utilized for plasmonic color printing. Ag, Au, and their complex films deposited on a glass substrate were dewetted into different surface structures such as droplets, rods, and ripples, depending on the incident laser energy. The resulting morphological evolutions could be explained by Rayleigh and capillary instabilities. For a bimetallic film comprising Ag nanowires coated on a Au layer, a few different plasmonic colors were generated from a single sample simply by changing the laser fluence. This provides a possible method for implementing plasmonic color laser printing without using a prepatterned template.
与基于颜料的技术相比,等离子体彩色激光打印具有多个优点,包括无需油墨和碳粉以及可产生不褪色的颜色。然而,当前的打印方法需要通过纳米制造工艺制备模板,这使得其不适用于大面积彩色图像。在本研究中,我们表明纳秒脉冲激光诱导的金属薄膜去湿可有效地用于等离子体彩色打印。根据入射激光能量,沉积在玻璃基板上的银、金及其复合薄膜会去湿成不同的表面结构,如液滴、棒状和波纹状。由此产生的形态演变可以用瑞利和毛细管不稳定性来解释。对于由涂覆在金层上的银纳米线组成的双金属薄膜,只需改变激光能量密度,就能从单个样品中产生几种不同的等离子体颜色。这为无需使用预先图案化模板实现等离子体彩色激光打印提供了一种可能的方法。