...
首页> 外文期刊>ACS nano >Wide-Gamut Plasmonic Color Palettes with Constant Subwavelength Resolution
【24h】

Wide-Gamut Plasmonic Color Palettes with Constant Subwavelength Resolution

机译:具有恒定亚波长分辨率的宽域等离子体调色板

获取原文
获取原文并翻译 | 示例
           

摘要

Unlike dye-based colorants, for which dilution results in a decrease in color saturation, a reduction of nanostructure density in plasmonic prints could increase color saturation instead. This interesting observation can be explained by the absorption cross-section of the nanostructure being larger than its physical cross-section. In this paper, we demonstrate the correlation between absorption cross-section and nanostructure density and use it to realize saturated colors by fabricating metal-insulator-metal aluminum nanostructures that support gap-surface plasmons (GSPs). We obtained structures with absorption cross-sections that exceed 10 times their physical cross-sections. The large absorption cross-sections of the GSP structures herald a color-mixing scheme where nanostructures of different hues are combined within subpixels at a constant pitch. The pitch is chosen such that the total absorption cross-section of individual constituents of the cell occupies the unit size area. Using a constant pitch of 320 nm, hence preserving the print resolution, our structures exhibit 45% coverage of the sRGB color space. By employing absorption cross-sections of the nanostructures, we produced black and saturated green pixels, which have been challenging to achieve in plasmonic color printing, The effects of square and hexagonal arrangements on color saturation are investigated, and point mixing effects are observed between individual nanostructures.
机译:与基于染料的着色剂不同,稀释导致颜色饱和度降低,等离子体印迹中的纳米结构密度的降低可以增加颜色饱和度。这种有趣的观察可以通过纳米结构的吸收横截面大于其物理横截面来解释。在本文中,我们证明了吸收横截面和纳米结构密度之间的相关性,并通过制造支撑间隙表面等离子体(GSP)的金属绝缘体 - 金属铝纳米结构来实现饱和颜色。我们获得了吸收横截面的结构,其物理横截面超过10倍。 GSP结构的大吸收横截面预热了一种颜色混合方案,其中不同色调的纳米结构在恒定间距的子像素内组合。选择间距使得细胞的各个成分的总吸收横截面占据单位尺寸区域。使用320nm的恒定间距,因此保持打印分辨率,我们的结构表现出SRGB颜色空间的45%覆盖率。通过采用纳米结构的吸收横截面,我们产生了黑色和饱和的绿色像素,这一直挑战以在等离子体彩色印刷中实现,因此研究了方形和六边形布置对色彩饱和的影响,并且在个体之间观察到点混合效应纳米结构。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号