用于制造柔性应变传感器的超可拉伸多功能离子凝胶

Fengjun Fang , Chuang Jiang , Chenxi Ning , Wei Liu , Qingxi Hou , Yonghao Ni
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引用次数: 0

摘要

随着“物联网”和人机交互技术的快速发展,开发简单、可扩展的可拉伸柔性传感器制造平台变得至关重要和紧迫。在此,我们报道了一种简单的策略,即使用绿色氯化胆碱-丙烯酰胺深共晶溶剂(CC-AM-DES)来引导α-硫辛酸(LA)的原位开环聚合,从而成功开发出可拉伸的离子凝胶材料。由CC-AM-DES系统制备的离子凝胶具有超拉伸性(>;9000%)、100%紫外线阻断能力、可调粘附性(29–414 kPa)、高离子电导率(4.45×10−4 S/cm)和理想的防冻性(–27°C)等多功能优点。此外,这种出色的离子凝胶可以很容易地涂覆在具有可设计形状和图案的各种材料基底上。由于这些有前景的特性和性能,可扩展的柔性应变传感器由离子凝胶组装而成,并对多种外部机械刺激表现出稳定的电阻变化(R/R0)。这项研究为制造离子凝胶材料和多功能柔性应变传感器提供了一种绿色、经济高效和可扩展的策略,在快速出现的高拉伸可穿戴/柔性电子产品中显示出巨大的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Superstretchable and multifunctional ionogel for facile fabricating flexible strain sensors

With the rapid development of “Internet of Things” and human-computer interaction techniques, it is essential and urgent to develop facile and scalable fabrication platforms for stretchable flexible sensor. Herein, we report a facile strategy of using the green choline chloride–acrylamide deep eutectic solvent (CC-AM DES) to guide the in-situ ring-opening polymerization of α-lipoic acid (LA), leading to the successful development of a stretchable ionogel material. The as-prepared ionogel from CC-AM DES system exhibits multifunctional merits including the super stretchability (>9000%), 100% UV-blocking ability, tunable adhesiveness (29–414 kPa), high ionic conductivity (4.45 × 10−4 S/cm), and ideal anti-freezing (–27 °C). In addition, this outstanding ionogel can be readily coated on various material substrates with designable shapes and patterns. Owning to these promising properties and performances, a scalable flexible strain sensor is assembled from the ionogel and exhibits stable resistance variations (R/R0) towards multiple external mechanical stimulus. This study provides a green, cost effective, and scalable strategy to fabricate ionogel materials and multifunctional flexible strain sensors, showing a great potential in the fast-emerging highly stretchable wearable/flexible electronics.

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