Shams Es-Haghi S, Weiss R A
Advanced Structures and Composites Center, The University of Maine, 35 Flagstaff Road, Orono, ME 04469-5793, USA.
Department of Chemical and Biomedical Engineering, The University of Maine, 5737 Jenness Hall, Orono, ME 04469-5737, USA.
Gels. 2023 Dec 28;10(1):29. doi: 10.3390/gels10010029.
This paper describes a simple method to synthesize tough hydrogels from a highly cross-linked neutral network. It was found that applying alkaline hydrolysis to a highly cross-linked hydrogel synthesized from acrylamide (AAm) can increase its swelling ratio dramatically. Double-network (DN) hydrogels synthesized from polymerization of loosely cross-linked AAm networks inside a highly cross-linked AAm gel were not tough. However, repeating the same recipes with a second polymerization step to synthesize a DN hydrogel from a hydrolyzed highly cross-linked AAm gel resulted in tough hydrogels. Those gels exhibited finite tensile behavior similar to that of conventional DN hydrogels. Moreover, craze-like patterns were observed during tensile loading of a DN hydrogel synthesized from a hydrolyzed highly cross-linked first network and a loosely cross-linked second network. The patterns remained in the gel even after strain hardening at high stretch ratios. The craze-like pattern formation was suppressed by increasing the concentration of cross-linking monomer in the second polymerization step. Crack propagation in DN hydrogels synthesized using hydrolysis was also studied by applying a tensile load on notched specimens.
本文描述了一种从高度交联的中性网络合成坚韧水凝胶的简单方法。研究发现,对由丙烯酰胺(AAm)合成的高度交联水凝胶进行碱水解可显著提高其溶胀率。在高度交联的AAm凝胶内部通过松散交联的AAm网络聚合而成的双网络(DN)水凝胶并不坚韧。然而,采用相同配方通过第二步聚合从水解后的高度交联AAm凝胶合成DN水凝胶,则可得到坚韧的水凝胶。这些凝胶表现出与传统DN水凝胶相似的有限拉伸行为。此外,在由水解后的高度交联第一网络和松散交联第二网络合成的DN水凝胶拉伸加载过程中观察到了类裂纹图案。即使在高拉伸比下发生应变硬化后,这些图案仍保留在凝胶中。通过增加第二步聚合中交联单体的浓度可抑制类裂纹图案的形成。还通过对带缺口试样施加拉伸载荷,研究了采用水解法合成的DN水凝胶中的裂纹扩展。