Materials Architecturing Research Center, Korea Institute of Science and Technology, 5 Hwarang-ro 14-gil, Seoul 02792, Republic of Korea.
Division of Nano & Information Technology (Nanomaterials Science and Engineering), University of Science and Technology, 217 Gajeong-ro, Yuseong-gu, Daejeon 34113, Republic of Korea.
ACS Appl Mater Interfaces. 2023 Nov 22;15(46):54143-54156. doi: 10.1021/acsami.3c12622. Epub 2023 Nov 9.
Structural coloration has recently sparked considerable attention on the laboratory and industrial scale. Structural colors can create vivid, saturated, and long-lasting colors on metallic surfaces for optical filters, digital displays, and surface decoration. This study used an all-solution, low-cost method, free of a specific setup procedure, to fabricate structural colors of a multilayered metal-dielectric structure based on interference effects within a Fabry-Perot cavity. The insulating (dielectric) layer was produced from perhydropolysilazane, an inorganic silicon-containing polymer, from which hydrogen was liberated during conversion into silica and applied to reduce metallic nanoparticles on the silica surface. This simple manufacturing technique contributes to the fabrication of large, high-quality surfaces, which could potentially be employed for surface decoration. The fabricated surfaces also exhibited excellent hydrophobic properties with contact angles up to 137°, endowing them with self-cleaning properties. In addition, the antiviral and antibacterial impact of the silver (Ag)/silica (SiO)/stainless steel (SUS) film was also examined, as Ag has been reported to have antimicrobial and, recently, antiviral properties. According to three independently conducted antiviral assays, the fluorescence expression of virus-infected cells, PCR analysis, and modified tissue culture infectious dose assay, the film inhibited lentivirus by 75, 97, and 99% when exposed to the virus for 20 min, 1 h, and 20 min, respectively. Furthermore, the film had exceptional antibacterial activity with no colony growth observed for 24 and 12 h of inoculation. It is thus conceivable that these structural color-based films can be used to not only decorate metal surfaces with aesthetic colors but also limit virus and bacterium propagation successfully.
结构色最近在实验室和工业规模上引起了相当大的关注。结构色可以在金属表面上产生生动、饱和和持久的颜色,用于光学滤波器、数字显示器和表面装饰。本研究使用全溶液、低成本的方法,无需特定的设置程序,基于法布里-珀罗腔中的干涉效应,制造了多层金属-电介质结构的结构色。绝缘(介电)层由无机含硅聚合物全氢聚硅氮烷制成,在转化为二氧化硅的过程中会释放出氢气,并应用于减少二氧化硅表面上的金属纳米粒子。这种简单的制造技术有助于制造大尺寸、高质量的表面,这可能用于表面装饰。所制造的表面还表现出极好的疏水性,接触角高达 137°,赋予其自清洁特性。此外,还研究了银(Ag)/二氧化硅(SiO)/不锈钢(SUS)薄膜的抗病毒和抗菌作用,因为据报道 Ag 具有抗菌作用,最近还具有抗病毒作用。根据三个独立进行的抗病毒测定,即病毒感染细胞的荧光表达、PCR 分析和改良组织培养感染剂量测定,当薄膜在 20 分钟、1 小时和 20 分钟的病毒暴露下,分别抑制慢病毒的效率为 75%、97%和 99%。此外,该薄膜具有出色的抗菌活性,接种 24 小时和 12 小时后,没有观察到菌落生长。因此,可以想象,这些基于结构色的薄膜不仅可以用美观的颜色装饰金属表面,而且还可以成功地限制病毒和细菌的传播。