Yuan Ningxiao, Xu Lu, Wang Hualiang, Fu Youpeng, Zhang Zhe, Liu Lan, Wang Cuiling, Zhao Jianhao, Rong Jianhua
Department of Materials Science and Engineering, College of Science and Engineering, Jinan University , Guangzhou 510632, P. R. China.
ACS Appl Mater Interfaces. 2016 Dec 14;8(49):34034-34044. doi: 10.1021/acsami.6b12243. Epub 2016 Nov 30.
Double-network (DN) hydrogels with high strength and toughness have been developed as promising materials. Herein, we explored a dual physically cross-linked polyacrylamide/xanthan gum (PAM/XG) DN hydrogel. The nonchemically cross-linked PAM/XG DN hydrogels exhibited fracture stresses as high as 3.64 MPa (13 times higher than the pure PAM single network hydrogel) and compressive stresses at 99% strain of more than 50 MPa. The hydrogels could restore their original shapes after continuously loading-unloading tensile and compressive cyclic tests. In addition, the PAM/XG DN hydrogels demonstrated excellent fatigue resistance, notch-insensitivity, high stability in different harsh environments, and remarkable self-healing properties, which might result from their distinctive physical-cross-linking structures. The attenuated total reflectance infrared spectroscopy (ATR-IR) and dynamic thermogravimetric analysis (TGA) results indicated that there were no chemical bonds (only hydrogen bonds) between the XG and PAM networks. The PAM/XG DN hydrogel synthesis offers a new avenue for the design and construction of DN systems, broadening current research and applications of hydrogels with excellent mechanical properties.
具有高强度和韧性的双网络(DN)水凝胶已被开发成为有前景的材料。在此,我们探索了一种双重物理交联的聚丙烯酰胺/黄原胶(PAM/XG)DN水凝胶。非化学交联的PAM/XG DN水凝胶表现出高达3.64 MPa的断裂应力(比纯PAM单网络水凝胶高13倍)以及在99%应变下超过50 MPa的压缩应力。在连续的拉伸和压缩循环加载-卸载试验后,水凝胶能够恢复其原始形状。此外,PAM/XG DN水凝胶表现出优异的抗疲劳性、缺口不敏感性、在不同恶劣环境中的高稳定性以及显著的自愈性能,这可能归因于其独特的物理交联结构。衰减全反射红外光谱(ATR-IR)和动态热重分析(TGA)结果表明,XG和PAM网络之间不存在化学键(仅存在氢键)。PAM/XG DN水凝胶的合成提供了一种设计和构建DN体系的新途径,拓宽了当前对具有优异力学性能的水凝胶的研究和应用。