材料科学
弹性体
可穿戴计算机
光子晶体
可穿戴技术
导电体
离子液体
光子学
离子键合
制作
液晶
纳米技术
电阻和电导
光电子学
电子皮肤
柔性电子器件
离子电导率
聚合物
灵活的显示器
扩散
噪音(视频)
数码产品
耐久性
结构着色
作者
Xinyu Jiang,Tong An,Feng Gao,Junjun Qiu,Pengli Li,Xingyi Huang,Tongxiang Fan,Qibin Zhao
标识
DOI:10.1002/adfm.202424503
摘要
Abstract Ion‐conductive photonic crystal elastomers (ic‐PCEs) uniquely combine stimuli‐responsive color changes with electrical feedback, enabling transformative applications in wearable electronics and adaptive camouflage. However, their fabrication methods are limited. Here, a scalable swelling–deswelling approach is presented to fabricate ic‐PCEs by diffusing ionic liquids into pre‐assembled PCEs. When swelling, the polymer matrix is initially dilated to create intermolecular spaces, facilitating homogeneous ionic liquid diffusion. Once diffusion is complete, hydrogen bonding stabilizes the ionic liquid within the matrix, forming a conductive network beyond a threshold concentration. At ∼50 wt% ionic liquid content, the ic‐PCEs exhibit high ionic conductivity (∼0.46 mS cm −1 ) and a ∼55% enhancement in color brightness. The ic‐PCEs are highly stretchable, with a rapid recovery time (∼170 ms) and reversible color and electrical resistance responses to strain. Under 50% strain, the material shows a color shift from red to bluish‐green, a ∼20% decrease in reflection wavelength, and a ∼135% change in electrical resistance. Exceptional thermal stability and durability further ensure reliable performance. The potential of ic‐PCEs as wearable motion sensors applied to fingers and joints is demonstrated, showcasing their multifunctionality. This work provides a robust route for scalable ic‐PCE fabrication, opening new opportunities for advanced wearable devices and adaptive materials.
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