Chen Yu-Peng, Lai Chien-Chih, Tsai Wan-Shao
Opt Express. 2020 Aug 17;28(17):24511-24525. doi: 10.1364/OE.398903.
Plasmonic resonances in metallic nanostructures are promising for the structure-dependent color-rendering effect. In this study, bismuth is selected as an alternative plasmonic material due to its large tunable range from near-ultraviolet to near-infrared. Various sizes of core-shell bismuth nanoparticles are fabricated on a large-area silicon substrate using a one-step thermal evaporation deposition process. Particle diameters, cross-sections, and arrangement are characterized at 12 featured sections, which reveal spectral shifts and full visible colors in a hue order with a color gamut that is close to sRGB. Color palettes on the chromaticity coordinates rendered from both measured and simulation reflection spectra are in very good accordance with the microscopic image colors of all sections.
金属纳米结构中的等离子体共振在结构依赖的显色效应方面很有前景。在本研究中,铋因其从近紫外到近红外的大可调范围而被选作替代等离子体材料。使用一步热蒸发沉积工艺在大面积硅衬底上制备了各种尺寸的核壳铋纳米颗粒。在12个特征截面处对颗粒直径、横截面和排列进行了表征,这些表征揭示了光谱位移以及以色调顺序呈现的全可见颜色,其色域接近sRGB。由测量和模拟反射光谱得出的色度坐标上的调色板与所有截面的微观图像颜色非常吻合。