Zhao Yanbo, Zhao Kai, Yu Zhumin, Ye Changqing
School of Materials Science and Engineering, Suzhou University of Science and Technology, Suzhou 215009, China.
Polymers (Basel). 2023 Jun 9;15(12):2635. doi: 10.3390/polym15122635.
Flexible and stretchable electronic devices are indispensable parts of wearable devices. However, these electronics employ electrical transducing modes and lack the ability to visually respond to external stimuli, restricting their versatile application in the visualized human-machine interaction. Inspired by the color variation of chameleons' skin, we developed a series of novel mechanochromic photonic elastomers (PEs) with brilliant structural colors and a stable optical response. Typically, these PEs with a sandwich structure were prepared by embedding PS@SiO photonic crystals (PCs)within the polydimethylsiloxane (PDMS) elastomer. Benefiting from this structure, these PEs exhibit not only bright structural colors, but also superior structural integrity. Notably, they possess excellent mechanochromism through lattice spacing regulation, and their optical responses are stably maintained even when suffering from 100 stretching-releasing cycles, showing superior stability and reliability and excellent durability. Moreover, a variety of patterned PEs were successfully obtained through a facile mask method, which provides great inspiration to create intelligent patterns and displays. Based on these merits, such PEs can be utilized as visualized wearable devices for detecting various human joint movements in real time. This work offers a new strategy for realizing visualized interactions based on PEs, showing huge application prospects in photonic skins, soft robotics, and human-machine interactions.
柔性可拉伸电子设备是可穿戴设备不可或缺的组成部分。然而,这些电子产品采用电传感模式,缺乏对外部刺激做出视觉响应的能力,限制了它们在可视化人机交互中的广泛应用。受变色龙皮肤颜色变化的启发,我们开发了一系列具有鲜艳结构颜色和稳定光学响应的新型机械变色光子弹性体(PEs)。通常,这些具有三明治结构的PEs是通过将PS@SiO光子晶体(PCs)嵌入聚二甲基硅氧烷(PDMS)弹性体内制备而成。得益于这种结构,这些PEs不仅呈现出明亮的结构颜色,还具有优异的结构完整性。值得注意的是,它们通过晶格间距调节具有出色的机械变色性能,即使经历100次拉伸-释放循环,其光学响应仍能稳定保持,表现出卓越的稳定性、可靠性和耐久性。此外,通过一种简便的掩膜方法成功获得了各种图案化的PEs,这为创建智能图案和显示屏提供了很大的启发。基于这些优点,此类PEs可作为可视化可穿戴设备用于实时检测各种人体关节运动。这项工作为基于PEs实现可视化交互提供了一种新策略,在光子皮肤、软机器人和人机交互方面展现出巨大的应用前景。