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含铁/支链淀粉的聚乙烯醇/聚(3,4-乙撑二氧噻吩):聚苯乙烯磺酸盐可制备用于多功能可穿戴传感器的高韧性、抗冻且可自愈的水凝胶。

Polyvinyl alcohol/PEDOT:PSS with Fe/amylopectin enabled highly tough, anti-freezing and healable hydrogels for multifunctional wearable sensors.

作者信息

Zhou Shuang, Zhang Zheng, Zhong Wei, Meng Aiyun, Su Yaorong

机构信息

College of New Materials and New Energies, Shenzhen Technology University, Shenzhen, 518118, PR China.

College of New Materials and New Energies, Shenzhen Technology University, Shenzhen, 518118, PR China.

出版信息

Talanta. 2024 Nov 1;279:126592. doi: 10.1016/j.talanta.2024.126592. Epub 2024 Jul 19.

DOI:10.1016/j.talanta.2024.126592
PMID:39053360
Abstract

In recent years, hydrogel-based flexible sensors have garnered increasing attention in research. Ionic hydrogels, enriched with large amounts of ionic liquids, exhibit electrical conductivity, excellent electrochemical stability, anti-freezing, and antimicrobial properties. However, most ionic hydrogels suffer from poor mechanical properties, limiting their adaptability to more complex application scenarios. Integrating conductive polymers into hydrogels leads to desirable features such as increased specific surface area, soft and biocompatible interfaces, and high electrolyte permeability. In this study, we successfully prepared FeAp@PVA/PEDOT double-network hydrogel. Utilizing polyvinyl alcohol (PVA) as the primary matrix, we introduced PEDOT:PSS and FeCl to confer conductivity to the hydrogel. The incorporation of amylopectin (Ap) further enhanced mechanical performance. The resulted hydrogel sensor exhibits outstanding mechanical properties, allowing for stretching up to 347 % and withstanding a tensile force of 505 kPa. In addition, it exhibits excellent antifreeze properties (can work at -30 °C), healability, water retention, and high sensitivity to stretching (GF = 4.72 at a 200 % strain ratio), compression (GF = 2.97 at a 12 % compressive ratio), and temperature (TCR = 2.46). These remarkable properties of the hydrogel make it possible in applications such as human motion monitoring, handwriting recognition, and temperature sensing.

摘要

近年来,基于水凝胶的柔性传感器在研究中受到越来越多的关注。富含大量离子液体的离子水凝胶具有导电性、优异的电化学稳定性、抗冻性和抗菌性能。然而,大多数离子水凝胶的机械性能较差,限制了它们对更复杂应用场景的适应性。将导电聚合物整合到水凝胶中可带来诸如增加比表面积、柔软且生物相容的界面以及高电解质渗透性等理想特性。在本研究中,我们成功制备了FeAp@PVA/PEDOT双网络水凝胶。以聚乙烯醇(PVA)作为主要基质,我们引入了PEDOT:PSS和FeCl赋予水凝胶导电性。支链淀粉(Ap)的加入进一步增强了机械性能。所得的水凝胶传感器具有出色的机械性能,可拉伸至347%,并能承受505 kPa的拉力。此外,它还具有优异的抗冻性能(可在-30°C下工作)、自愈性、保水性以及对拉伸(在200%应变率下GF = 4.72)、压缩(在12%压缩率下GF = 2.97)和温度(TCR = 2.46)的高灵敏度。水凝胶的这些卓越性能使其在人体运动监测、手写识别和温度传感等应用中成为可能。

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