直接将离子墨水写入并渗透到弹性体中,实现可图案化、防水和耐磨的离子电路

IF 18.5 1区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Yao An, Junshi Wu, Beihang Xu, Jinghao Zhu, Antong Ma, Wenjin Wang, Yongjia Yang, Xiaodong Lian, Zhaoxiang Yang, Yapei Wang, Yonglin He
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引用次数: 0

摘要

由于对离子回路的需求不断增加,因此需要具有优异耐磨性和易于制备的图案化方法。然而,传统的电路表面修饰方法在使用过程中经常出现磨损和脱落。在此,我们采用聚(离子液体)和聚氨酯相互渗透的网络,创造出一种可图案化的离子回路,它可以抵抗砂纸或胶带的磨损。疏水性离子液体在聚氨酯内成功聚合,形成防水离子回路,同时降低环境湿度的影响。此外,这种离子回路还能在人工智能的帮助下感知温度、压力和按压形状等多种信号。互穿网络为制造耐磨、稳定的图案化离子电路提供了一种简单实用的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Direct Ionic Ink Writing on and Penetrating into Elastomer for Patternable, Waterproof, and Wear-Resistant Ionic Circuits

Direct Ionic Ink Writing on and Penetrating into Elastomer for Patternable, Waterproof, and Wear-Resistant Ionic Circuits
The increasing need for ionic circuits has driven the demand for patterning methods with excellent wear resistance and ease of preparation. However, the traditional method of the circuits modified on the surface frequently suffers from wear and detachment during use. Herein, an interpenetrating network of poly(ionic liquid) and polyurethane is employed, creating a patternable ionic circuit that can resist the abrasion of sandpaper or taping. Hydrophobic ionic liquids are successfully polymerized inside the polyurethane to achieve a waterproof ionic circuit, simultaneously reducing the impact of environmental humidity. Additionally, this ionic circuit possesses the capability to perceive the multisignals of temperature, pressure, and pressing shapes with the assistance of artificial intelligence. The interpenetrating network provides a simple and practical solution for the fabrication of wear-resistant and stable patterned ionic circuits.
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来源期刊
Advanced Functional Materials
Advanced Functional Materials 工程技术-材料科学:综合
CiteScore
29.50
自引率
4.20%
发文量
2086
审稿时长
2.1 months
期刊介绍: Firmly established as a top-tier materials science journal, Advanced Functional Materials reports breakthrough research in all aspects of materials science, including nanotechnology, chemistry, physics, and biology every week. Advanced Functional Materials is known for its rapid and fair peer review, quality content, and high impact, making it the first choice of the international materials science community.
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