Logo image
Stepwise-Nanocavity-Assisted Transmissive Color Filter Array Microprints
Journal article   Peer reviewed

Stepwise-Nanocavity-Assisted Transmissive Color Filter Array Microprints

Yasi Wang, Mengjie Zheng, Qifeng Ruan, Yanming Zhou, Yiqin Chen, Peng Dai, Zhengmei Yang, Zihao Lin, Yuxiang Long, Ying Li, …
Research (Washington), Vol.2018, p.8109054
01/01/2018
PMID: 31549038

Abstract

Multidisciplinary Sciences Science & Technology Science & Technology - Other Topics
Visible-light color filters using patterned nanostructures have attracted much interest due to their various advantages such as compactness, enhanced stability, and environmental friendliness compared with traditional pigment or dye-based optical filters. While most existing studies are based on planar nanostructures with lateral variation in size, shape, and arrangement, the vertical dimension of structures is a long-ignored degree of freedom for the structural colors. herein, we demonstrate a synthetic platform for transmissive color filter array by coordinated manipulations between height-varying nanocavities and their lateral filling fractions. The thickness variation of those nanocavities has been fully deployed as an alternative degree of freedom, yielding vivid colors with wide gamut and excellent saturation. Experimental results show that the color-rendering capability of the pixelated nanocavities can be still retained as pixels are miniaturized to 500 nm. Crosstalk between closely spaced pixels of a Bayer color filter arrangement was calculated, showing minimal crosstalk for 1 mu m(2) square subpixels. Our work provides an approach to designing and fabricating ultracompact color filter arrays for various potential applications including stained-glass microprints, microspectrometers, and high-resolution image sensing systems.
url
https://doi.org/10.1155/2018/8109054View
Published (Version of record) Open

Metrics

1 Record Views

Details

Logo image