Duan Sidi, Wu Shuwang, Hua Mutian, Wu Dong, Yan Yichen, Zhu Xinyuan, He Ximin
Department of Materials Science and Engineering, University of California Los Angeles, Los Angeles, CA 90095, USA.
School of Chemistry and Chemical Engineering, State Key Laboratory of Metal Matrix Composites, Shanghai Jiao Tong University, Shanghai 200240, China.
iScience. 2021 Aug 17;24(9):102989. doi: 10.1016/j.isci.2021.102989. eCollection 2021 Sep 24.
Hydrogels have gained tremendous attention due to their versatility in soft electronics, actuators, biomedical sensors, etc. Due to the high water content, hydrogels are usually soft, weak, and freeze below 0°C, which brings severe limitations to applications such as soft robotics and flexible electronics in harsh environments. Most existing anti-freezing gels suffer from poor mechanical properties and urgently need further improvements. Here, we took inspirations from tendon and coniferous trees and provided an effective method to strengthen polyvinyl alcohol (PVA) hydrogel while making it freeze resistant. The salting-out effect was utilized to create a hierarchically structured polymer network, which induced superior mechanical properties (Young's modulus: 10.1 MPa, tensile strength: 13.5 MPa, and toughness: 127.9 MJ/m). Meanwhile, the cononsolvency effect was employed to preserve the structure and suppress the freezing point to -60°C. Moreover, we have demonstrated the broad applicability of our material by fabricating PVA hydrogel-based hydraulic actuators and ionic conductors.
水凝胶因其在软电子学、致动器、生物医学传感器等领域的多功能性而备受关注。由于含水量高,水凝胶通常质地柔软、强度较弱,且在0°C以下会冻结,这给在恶劣环境中的软机器人和柔性电子等应用带来了严重限制。大多数现有的抗冻凝胶机械性能较差,迫切需要进一步改进。在此,我们从肌腱和针叶树中获得灵感,提供了一种在使聚乙烯醇(PVA)水凝胶具有抗冻性的同时增强其强度的有效方法。利用盐析效应创建了具有层次结构的聚合物网络,从而赋予其优异的机械性能(杨氏模量:10.1 MPa,拉伸强度:13.5 MPa,韧性:127.9 MJ/m³)。同时,利用共溶剂化效应保持结构并将冰点抑制至-60°C。此外,我们通过制造基于PVA水凝胶的液压致动器和离子导体,展示了我们材料的广泛适用性。