Olsson Oliver, Gugole Marika, Dahlin Andreas
Department of Chemistry and Chemical Engineering, Chalmers University of Technology, 41296 Gothenburg, Sweden.
Nanophotonics. 2023 Jan 12;12(8):1591-1599. doi: 10.1515/nanoph-2022-0624. eCollection 2023 Apr.
Recent advances in nanofabrication technologies have enabled new ways to produce structural colors. By combining nanofabrication methods, it is possible to integrate electrochromic materials with the nanostructures, which enable electrical tuning of the colors and thus new types of reflective displays. Previous work has shown high quality colors and high switching contrast in general. However, so far the intensity modulation has always been more limited in the blue. In this work we prepare blue structural colors and synthesize films of an electrochromic polymer (PProDOP) that is optimized for high contrast in this spectral region. A protocol for electropolymerization of PProDOP on gold surfaces is presented. The polymer films are shown to follow Lambert-Beer behavior and can provide up to 75% contrast (difference in transmittivity). On blue nanostructures, the reflectivity can be modulated with a contrast of 50%, which is a considerable improvement in comparison with previous work. The results presented here should be useful for electrochromic or other electro-optical devices operating in the blue spectral region.
纳米制造技术的最新进展带来了产生结构色的新方法。通过结合纳米制造方法,有可能将电致变色材料与纳米结构集成在一起,从而实现颜色的电调谐,进而产生新型反射式显示器。此前的工作总体上已展示出高质量的颜色和高开关对比度。然而,到目前为止,强度调制在蓝色区域一直更为受限。在这项工作中,我们制备了蓝色结构色,并合成了一种在该光谱区域具有高对比度优化的电致变色聚合物(聚对苯二酚二氧磷杂环戊二烯,PProDOP)薄膜。本文介绍了在金表面电聚合PProDOP的方法。聚合物薄膜表现出符合朗伯 - 比尔定律的行为,并且可以提供高达75%的对比度(透过率差异)。在蓝色纳米结构上,反射率可以通过50%的对比度进行调制,与之前的工作相比有了显著改进。本文给出的结果对于在蓝色光谱区域工作的电致变色或其他电光器件应该是有用的。