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用于可穿戴应变传感器和 VOC 吸收的超拉伸、粘附、导电和防冻多网络硼酸酯基水凝胶。

Ultra-Stretchable, Adhesive, Conductive, and Antifreezing Multinetwork Borate Ester-Based Hydrogel for Wearable Strain Sensor and VOC Absorption.

机构信息

Hebei Provincial Key Laboratory of Photoelectric Control on Surface and Interface, and College of Science, Hebei University of Science and Technology, Yuxiang Street 26, Shijiazhuang 050080, PR China.

出版信息

ACS Sens. 2024 Oct 25;9(10):5322-5332. doi: 10.1021/acssensors.4c01567. Epub 2024 Oct 15.

Abstract

Hydrogels based on borate ester bonds exhibit remarkable tensile strength and self-healing ability, which make them a promising material for various biological research and strain sensor applications. However, in order to meet the practical application of hydrogel strain sensors, they must also show high conductivity, frost resistance, and proper adhesion, which is still a continuous challenge. Herein, a triple network hydrogel was prepared using poly(vinyl alcohol) (PVA) as the first network, ethylene imine polymer (PEI) as the second network, and poly(acrylamide--acrylic acid) copolymer (denoted as P(AM-Co-AA)) as the third network. 3-Carboxy-4-fluorophenylboronic acid (CFBS) was used as the cross-linking agent, glycerol (GL) was added to improve low-temperature resistance, and sodium chloride (NaCl) was incorporated to enhance electrical conductivity. The resulting PVA-CFBS@PEI@P(AM-Co-AA) triple network hydrogel exhibited impressive mechanical properties, including ultra tensile strength (4100%, 266.8 kPa), high toughness (6.5 MJ/m), and low-temperature resistance (-60 °C). Additionally, it demonstrated high conductivity (σ = 1.83 mS/cm). The incorporation of CFBS endowed the hydrogel with excellent self-healing ability, while GL improved low-temperature resistance and strain sensing sensitivity (gauge factor (GF) = 2.8 (0-300%), GF = 5.6 (300-600%), GF = 8.7 (600-1000%)). The prepared hydrogel sensor can repetitively detect and differentiate between a wide range of human activities such as joint movements, frowning, and smiling. Additionally, the hydrogel demonstrated favorable mechanical properties at -20 °C (good adhesion, tensile strength: 1169.8%, 1.2 MPa; conductivity: 0.71 mS/cm, and strain sensing coefficient: GF = 1.3), making it suitable for applications in low-temperature environments. Furthermore, it also functions as an exceptional adsorbent, capable of selectively absorbing volatile organic compounds at high capacity (e.g., methanol: 1.80 g/g; acetone: 1.50 g/g).

摘要

基于硼酸酯键的水凝胶表现出显著的拉伸强度和自修复能力,这使它们成为各种生物研究和应变传感器应用的有前途的材料。然而,为了满足水凝胶应变传感器的实际应用,它们还必须表现出高导电性、耐低温性和适当的附着力,这仍然是一个持续的挑战。在此,使用聚乙烯醇 (PVA) 作为第一网络、乙烯亚胺聚合物 (PEI) 作为第二网络和聚丙烯酰胺-丙烯酸共聚物 (P(AM-Co-AA)) 作为第三网络,制备了一种三网络水凝胶。3-羧基-4-氟苯硼酸 (CFBS) 用作交联剂,添加甘油 (GL) 以提高耐低温性,并掺入氯化钠 (NaCl) 以提高电导率。所得的 PVA-CFBS@PEI@P(AM-Co-AA) 三网络水凝胶具有令人印象深刻的机械性能,包括超高拉伸强度 (4100%,266.8 kPa)、高韧性 (6.5 MJ/m) 和耐低温性 (-60 °C)。此外,它还表现出高导电性 (σ = 1.83 mS/cm)。CFBS 的掺入赋予水凝胶优异的自修复能力,而 GL 提高了耐低温性和应变传感灵敏度 (应变系数 (GF) = 2.8 (0-300%),GF = 5.6 (300-600%),GF = 8.7 (600-1000%))。所制备的水凝胶传感器可以重复检测和区分各种人体活动,如关节运动、皱眉和微笑。此外,水凝胶在 -20°C 时表现出良好的机械性能 (良好的附着力,拉伸强度:1169.8%,1.2 MPa;电导率:0.71 mS/cm,应变传感系数:GF = 1.3),适用于低温环境中的应用。此外,它还可用作一种出色的吸附剂,能够以高容量选择性地吸收挥发性有机化合物 (例如,甲醇:1.80 g/g;丙酮:1.50 g/g)。

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