Zhou Ming-Xia, Jin Feng, Wang Jian-Yu, Dong Xian-Zi, Liu Jie, Zheng Mei-Ling
Laboratory of Organic NanoPhotonics and CAS Key Laboratory of Bio-inspired Materials and Interfacial Science, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, No. 29, Zhongguancun East Road, Beijing, 100190, P. R. China.
University of Chinese Academy of Sciences, Yanqihu Campus, Beijing, 101407, P. R. China.
Small. 2023 Nov;19(47):e2304384. doi: 10.1002/smll.202304384. Epub 2023 Jul 21.
Responsive structural colors from artificially engineered micro/nanostructures are critical to the development of anti-counterfeiting, optical encryption, and intelligent display. Herein, the responsive structural color of hydrogel micropillar array is demonstrated under the external stimulus of ethanol vapor. Micropillar arrays with full color are fabricated via femtosecond laser direct writing by controlling the height and diameter of the micropillars according to the FDTD simulation. Color-switching of the micropillar arrays is achieved in <1 s due to the formation of liquid film among micropillars. More importantly, the structural color blueshift of the micropillar arrays is sensitive to the micropillar diameter, instead of the micropillar height. The micropillar array with a diameter of 772 nm takes 400 ms to complete blueshift under ethanol vapor, while that with a diameter of 522 nm blueshifts at 2400 ms. Microscale patterns are realized by employing the size-dependent color-switching of designed micropillar arrays under ethanol vapor. Moreover, Morse code and directional blueshift of structural colors are realized in the micropillar arrays. The advantages of controllable color-switching of the hydrogel micropillar array would be prospective in the areas of optical encryption, dynamic display, and anti-counterfeiting.
人工工程微纳结构产生的响应式结构色对于防伪、光学加密和智能显示的发展至关重要。在此,展示了水凝胶微柱阵列在乙醇蒸汽的外部刺激下的响应式结构色。通过飞秒激光直写,根据FDTD模拟控制微柱的高度和直径,制备出具有全色的微柱阵列。由于微柱之间形成液膜,微柱阵列的颜色切换在1秒内即可实现。更重要的是,微柱阵列的结构色蓝移对微柱直径敏感,而不是对微柱高度敏感。直径为772 nm的微柱阵列在乙醇蒸汽下完成蓝移需要400毫秒,而直径为522 nm的微柱阵列在2400毫秒时发生蓝移。通过利用设计的微柱阵列在乙醇蒸汽下尺寸依赖的颜色切换来实现微尺度图案。此外,在微柱阵列中实现了莫尔斯码和结构色的定向蓝移。水凝胶微柱阵列可控颜色切换的优点在光学加密、动态显示和防伪领域具有广阔前景。