School of Chemistry and Chemical Engineering, Shandong University of Technology, Zibo, Shandong 255000, People's Republic of China.
School of Mechanical Engineering, Shandong University of Technology, Zibo, Shandong 255000, People's Republic of China.
Langmuir. 2024 May 14;40(19):10305-10312. doi: 10.1021/acs.langmuir.4c00908. Epub 2024 May 2.
The limited elasticity and inadequate bonding of hydrogels made from guar gum (GG) significantly hinder their widespread implementation in personalized wearable flexible electronics. In this study, we devise GG-based self-adhesive hydrogels by creating an interpenetrating network of GG cross-linked with acrylic, 4-vinylphenylboronic acid, and Ca. With the leverage of the dynamic interactions (hydrogen bonds, borate ester bonds, and coordination bonds) between -OH in GG and monomers, the hydrogel exhibits a high stretchability of 700%, superior mechanical stress of 110 kPa, and robust adherence to several substrates. The adhesion strength of 54 kPa on porcine skin is obtained. Furthermore, the self-adhesive hydrogel possesses stable conductivity, an elevated gauge factor (GF), and commendable durability. It can be affixed to the human body as a strain sensor to obtain precise monitoring of human movement behavior. Our research offers possibilities for the development of GG-based hydrogels and applications in wearable electronics and medical monitoring.
由瓜尔胶(GG)制成的水凝胶弹性有限且键合不足,这极大地限制了其在个性化可穿戴柔性电子产品中的广泛应用。在本研究中,我们通过创建 GG 与丙烯酰、4-乙烯基苯硼酸和 Ca 的互穿网络,设计了基于 GG 的自粘性水凝胶。利用 GG 中的-OH 与单体之间的动态相互作用(氢键、硼酸酯键和配位键),水凝胶表现出高达 700%的拉伸性、优异的机械应力 110 kPa 和对多种基底的强大附着力。在猪皮上获得了 54 kPa 的附着强度。此外,自粘性水凝胶具有稳定的导电性、较高的应变系数(GF)和良好的耐用性。它可以贴附在人体上作为应变传感器,以精确监测人体运动行为。我们的研究为 GG 基水凝胶的开发和在可穿戴电子设备和医疗监测中的应用提供了可能性。