4.8 Article

Reversible Photochromic Photonic Crystal Device with Dual Structural Colors

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 14, 期 25, 页码 29070-29076

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.2c03771

关键词

KEYWORDS; photonic crystal; structural color; photoluminescence; anticounterfeiting; three-dimensional device

资金

  1. General Program of National Natural Science Foundation of China [52075196, 5001110032]
  2. Fundamental Research Funds for the Central Universities [2016YXZD059, 2021yjsCXCY023]

向作者/读者索取更多资源

In this study, a new fabrication strategy was employed to achieve three-dimensional photonic crystal-light emitting (PC-LE) devices with dual iridescent and reversible photochromic colors. Additionally, inkless color printing was realized through the etching process, generating a reversible and encrypted colorful bar code. This research opens up new possibilities for advanced display, color printing, and anticounterfeiting stickers.
attention in anticounterfeiting for their manipulated light emission and iridescent structural color, but their large-scale three-dimensional fabrication is still limited by poor mechanical strength and microstructural defects. Herein, colloidal nanospheres incorporated with photoluminescent dye were assembled to three-dimensional PC-LE devices through a large-scale compressing-induced strategy, which realized dual iridescent and reversible photochromic colors. Periodically distributed refractive indices between molten molecular chains and cross-linked nanospheres generated the iridescent structural color. Subsequently, the device surface reflected another different structural color after partially removing the surface molecular chains by etching. The light emission intensity of the dye was sufficient to obtain the reversible photochromic colors. Simultaneously, the manipulation toward light emission of the photonic band gap achieved the shape of the photoluminescent intenstiy spectra that varied in accordance with the reflective peak. Furthermore, by use of screen-printing tools and transparent masking glue, the etching process became an inkless color printing process, generating a colorful bar code (2 cm ?? 2 cm) on the device surface. The code was reversibly displayed and encrypted through control of the reflection and emission of light. Significantly, the PC-LE devices opened up a new route for advanced display, color printing, and anticounterfeiting stickers.

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