Goswami Shailesh K, McAdam Christopher John, Hanton Lyall R, Moratti Stephen C
Department of Chemistry, University of Otago, PO Box 56, Dunedin, 9054, New Zealand.
Macromol Rapid Commun. 2017 Jul;38(14). doi: 10.1002/marc.201700103. Epub 2017 May 10.
The wet and soft nature of hydrogels makes them useful as a mimic for biological tissues, and in uses such as actuators and drug delivery vehicles. For many applications the mechanical performance of the gel is critical, but gels are notoriously weak and prone to fracture. Free radical polymerization is a very powerful technique allowing for fine spatial and temporal control of polymerization, but also allows for the use of a wide range of monomers and mixtures. In this work, it is demonstrated that extremely tough and extensible hydrogels can be readily produced through simple radical polymerization of acrylamide or acrylic acid with a poly(ethylene oxide) macrocross-linker. These gels, with a water content of 85%, are extremely elastic with an extension much more than 15 000% at 9 MPa true stress. They can be compressed over 98% at a stress of 17 MPa. They are notch-insensitive, and the usual trouser tear test does not work because the tear simply does not propagate. This highly extensible nature seems to be related to very long chain lengths between cross-links and efficient incorporation of chains into the network.
水凝胶的湿润柔软特性使其适用于模拟生物组织,以及用作诸如致动器和药物递送载体等用途。对于许多应用而言,凝胶的机械性能至关重要,但凝胶的强度极低且极易断裂。自由基聚合是一种非常强大的技术,它不仅能实现对聚合反应在空间和时间上的精确控制,还能使用多种单体和混合物。在这项工作中,结果表明,通过丙烯酰胺或丙烯酸与聚环氧乙烷大分子交联剂进行简单的自由基聚合反应,能够轻松制备出极其坚韧且具有高延展性的水凝胶。这些凝胶的含水量为85%,具有极高的弹性,在9兆帕的真实应力下伸长率超过15000%。在17兆帕的应力下,它们能够被压缩超过98%。它们对缺口不敏感,常规的裤形撕裂试验无法对其进行测试,因为撕裂根本不会扩展。这种高度可延展的特性似乎与交联点之间非常长的链长度以及链有效并入网络有关。