Huang Weichen, Wang Xi, Luo Fanchen, Zhao Xuanmo, Chen Kedi, Qin Yafei
Faculty of Mechanical and Electrical Engineering, Kunming University of Science and Technology, Kunming 650500, P. R. China.
ACS Appl Mater Interfaces. 2024 Sep 18;16(37):49834-49844. doi: 10.1021/acsami.4c12419. Epub 2024 Sep 4.
Hydrogel, as a promising material for a wide range of applications, has demonstrated considerable potential for use in flexible wearable devices and engineering technologies. However, simultaneously realizing the ultrastretchability, low hysteresis, and high toughness of hydrogels is still a great challenge. Here, we present a dual physically cross-linked polyacrylamide (PAM)/sodium hyaluronate (HA)/montmorillonite (MMT) hydrogel. The introduction of HA increases the degree of chain entanglement, and the addition of MMT acts as a stress dissipation center and cross-linking agent, resulting in a hydrogel with high toughness and low hysteretic properties. This hydrogel synthesized by a simple strategy exhibited ultrahigh stretchability (3165%), high breaking stress (228 kPa), high toughness (4.149 MJ/m), and ultralow hysteresis (≈2% at 100% of strain). The fabricated hydrogel flexible strain sensors possessed fast response and recovery times (62.5:75 ms), a wide strain detection range (2000%), a strain detection limit of 1%, and excellent cycling stability over 500 cycles. Furthermore, the hydrogel flexible strain sensor can be used for human motion monitoring, gesture recognition, and pressure recognition assisted by deep learning algorithms, showing enormous promise for applications.
水凝胶作为一种在广泛应用中颇具前景的材料,已在柔性可穿戴设备和工程技术领域展现出巨大的应用潜力。然而,同时实现水凝胶的超拉伸性、低滞后性和高韧性仍是一项巨大挑战。在此,我们展示了一种双重物理交联的聚丙烯酰胺(PAM)/透明质酸钠(HA)/蒙脱石(MMT)水凝胶。HA的引入增加了链缠结程度,而MMT的添加充当了应力耗散中心和交联剂,从而得到一种具有高韧性和低滞后性能的水凝胶。通过简单策略合成的这种水凝胶表现出超高拉伸性(3165%)、高断裂应力(228 kPa)、高韧性(4.149 MJ/m)和超低滞后性(在100%应变时约为2%)。所制备的水凝胶柔性应变传感器具有快速响应和恢复时间(62.5:75 ms)、宽应变检测范围(2000%)、1%的应变检测极限以及超过500次循环的优异循环稳定性。此外,该水凝胶柔性应变传感器可用于人体运动监测、手势识别以及借助深度学习算法的压力识别,展现出巨大的应用前景。