State Key Laboratory of Chemical Engineering , East China University of Science and Technology , 130 Meilong Road , Shanghai 200237 , China.
Cixi Institute of Biomedical Engineering & Polymers and Composites Division, Ningbo Institute of Materials Technology & Engineering , Chinese Academy of Sciences , 1219 Zhongguan West Road , Ningbo 315201 , China.
ACS Appl Mater Interfaces. 2019 Jan 23;11(3):3506-3515. doi: 10.1021/acsami.8b20755. Epub 2019 Jan 8.
It is desired to create skin strain sensors composed of multifunctional conductive hydrogels with excellent toughness and adhesion properties to sustain cyclic loadings during use and facilitate the electrical signal transmission. Herein, we prepared transparent, compliant, and adhesive zwitterionic nanocomposite hydrogels with excellent mechanical properties. The incorporated zwitterionic polymers can form interchain dipole-dipole associations to offer additional physical cross-linking of the network. The hydrogels show a high fracture elongation up to 2000%, a fracture strength up to 0.27 MPa, and a fracture toughness up to 2.45 MJ/m. Moreover, the reversible physical interaction imparts the hydrogels with rapid self-healing ability without any stimuli. The hydrogels are adhesive to many surfaces including polyelectrolyte hydrogels, skin, glasses, silicone rubbers, and nitrile rubbers. The presence of abundant zwitterionic groups facilitates ionic conductivity in the hydrogels. The combination of these properties enables the hydrogels to act as strain sensors with high sensitivity (gauge factor = 1.8). The strategy to design the tough, adhesive, self-healable, and conductive hydrogels as skin strain sensors by the zwitterionic nanocomposite hydrogels is promising for practical applications.
人们希望创建由多功能导电水凝胶组成的皮肤应变传感器,这些水凝胶具有优异的韧性和附着力,可在使用过程中承受循环载荷,并促进电信号传输。本文制备了具有优异力学性能的透明、柔顺和粘附性两性离子纳米复合水凝胶。掺入的两性离子聚合物可以形成链间偶极-偶极缔合,为网络提供额外的物理交联。水凝胶的断裂伸长率高达 2000%,断裂强度高达 0.27 MPa,断裂韧性高达 2.45 MJ/m。此外,可逆的物理相互作用赋予水凝胶快速的自修复能力,而无需任何刺激。水凝胶对许多表面具有粘附性,包括聚电解质水凝胶、皮肤、玻璃、硅橡胶和丁腈橡胶。丰富的两性离子基团有利于水凝胶中的离子导电性。这些特性的结合使水凝胶能够用作具有高灵敏度(应变系数=1.8)的应变传感器。通过两性离子纳米复合水凝胶设计坚韧、粘附、自修复和导电水凝胶作为皮肤应变传感器的策略具有实际应用的前景。