Kim Youngji, Jung Kyungmin, Cho Jiung, Hyun Jerome K
Department of Chemistry and Nanoscience , Ewha Womans University , Seoul 03760 , Republic of Korea.
Western Seoul Center , Korea Basic Science Institute , Seoul 03760 , Republic of Korea.
ACS Nano. 2019 Sep 24;13(9):10717-10726. doi: 10.1021/acsnano.9b05382. Epub 2019 Sep 3.
Despite their distinctive chemical properties, lossy metals are generally avoided in the design of structural colors because the optical losses can degrade the color vibrancy. Herein, we demonstrate a strategy that allows lossy metals supporting near-wavelength dielectric gratings to achieve high color vibrancy by benefiting from the optical loss rather than suffering from it. By exciting the grating rotated 45° relative to the incident field, s-polarized (s-pol) and p-polarized (p-pol) light each excites a spectrally distinct resonance, described by a treatment of coupled waveguide-array modes, that retards the phase over the wavelength. Owing to the birefringence, a cross-polarized reflection spectrum displays two sharp peaks from each component that decreases the monochromaticity. We show that lossy metals can minimize the p-pol contribution, leaving the sharp s-pol response to determine the spectrum and generate high color vibrancy. Through this scheme, we demonstrate that lossy metal substrates including Pt, a catalytically active metal, and W, a CMOS-compatible metal, can achieve larger sRGB gamut coverage ratios of 90% and 69%, respectively, than that of 55% from Ag, while maintaining similar pixel contrast ratios to that of Ag.
尽管有损金属具有独特的化学性质,但在结构色设计中通常会避免使用,因为光学损耗会降低颜色鲜艳度。在此,我们展示了一种策略,即让支持近波长介质光栅的有损金属通过利用光学损耗而非受其影响来实现高颜色鲜艳度。通过激发相对于入射场旋转45°的光栅,s偏振(s-pol)光和p偏振(p-pol)光各自激发一个光谱上不同的共振,这可以通过耦合波导阵列模式的处理来描述,该共振在波长范围内延迟相位。由于双折射,交叉偏振反射光谱显示每个分量有两个尖锐峰,这降低了单色性。我们表明,有损金属可以最小化p-pol的贡献,仅留下尖锐的s-pol响应来决定光谱并产生高颜色鲜艳度。通过该方案,我们证明包括催化活性金属Pt和CMOS兼容金属W在内的有损金属基板,与Ag的55%相比,分别可以实现更大的sRGB色域覆盖率,即90%和69%,同时保持与Ag相似的像素对比度。