School of Chemistry and Chemical Engineering, Guangxi University , Nanning 530004, China.
The Key Laboratory of Polymer Processing Engineering, Ministry of Education, South China University of Technology , Guangzhou 510640, China.
ACS Appl Mater Interfaces. 2016 Jul 13;8(27):17728-37. doi: 10.1021/acsami.6b05941. Epub 2016 Jun 30.
Introducing ionic associations is one of the most effective approaches to realize a self-healing behavior for rubbers. However, most of commercial rubbers are nonpolar rubbers without now available functional groups to be converted into ionic groups. In this paper, our strategy was based on a controlled peroxide-induced vulcanization to generate massive ionic cross-links via polymerization of zinc dimethacrylate (ZDMA) in natural rubber (NR) and exploited it as a potential self-healable material. We controlled vulcanization process to retard the formation of covalent cross-link network, and successfully generated a reversible supramolecular network mainly constructed by ionic cross-links. Without the restriction of covalent cross-linkings, the NR chains in ionic supramolecular network had good flexibility and mobility. The nature that the ionic cross-links was easily reconstructed and rearranged facilitating the self-healing behavior, thereby enabling a fully cut sample to rejoin and retain to its original properties after a suitable self-healing process at ambient temperature. This study thus demonstrates a feasible approach to impart an ionic association induced self-healing function to commercial rubbers without ionic functional groups.
引入离子键是实现橡胶自修复行为最有效的方法之一。然而,大多数商业橡胶是非极性橡胶,没有现在可用的官能团转化为离子基团。在本文中,我们的策略基于受控过氧化物引发的硫化,通过锌二甲丙烯酸酯(ZDMA)在天然橡胶(NR)中的聚合生成大量离子交联,将其用作潜在的自修复材料。我们控制硫化过程以延迟共价交联网络的形成,并成功地生成了主要由离子交联构建的可逆超分子网络。没有共价交联的限制,离子超分子网络中的 NR 链具有良好的柔韧性和可移动性。离子交联易于重建和重排的性质促进了自修复行为,从而使完全切割的样品在合适的室温自修复过程后能够重新连接并保留其原始性能。因此,本研究为赋予具有离子官能团的商业橡胶提供了一种可行的离子键诱导自修复功能的方法。