Guangxi Colleges and Universities Key Laboratory of Applied Chemistry Technology and Resource Development, School of Chemistry and Chemical Engineering, Guangxi University, No. 100, Daxuedong Road, Xixiangtang District, Nanning 530004, China.
Guangxi Colleges and Universities Key Laboratory of Applied Chemistry Technology and Resource Development, School of Chemistry and Chemical Engineering, Guangxi University, No. 100, Daxuedong Road, Xixiangtang District, Nanning 530004, China.
Int J Biol Macromol. 2023 Jul 1;242(Pt 1):124681. doi: 10.1016/j.ijbiomac.2023.124681. Epub 2023 May 2.
Conventional vulcanized rubbers cause a non-negligible waste of resources due to the formation of 3D irreversible covalently cross-linked networks. The introduction of reversible covalent bonds, such as reversible disulfide bonds, into the rubber network, is an available solution to the above problem. However, the mechanical properties of rubber with only reversible disulfide bonds cannot meet most practical applications. In this paper, a strengthened bio-based epoxidized natural rubber (ENR) composite reinforced by sodium carboxymethyl cellulose (SCMC) was prepared. SCMC forms a mass of hydrogen bonds between its hydroxyl groups and the hydrophilic groups of ENR chain, which gives the ENR/2,2'-Dithiodibenzoic acid (DTSA)/SCMC composites an enhanced mechanical performance. With 20 phr SCMC, the tensile strength of the composite increases from 3.0 to 10.4 MPa, which is almost 3.5 times that of the ENR/DTSA composite without SCMC. Simultaneously, DTSA covalently cross-linked ENR with the introduction of reversible disulfide bonds, which enables the cross-linked network to rearrange its topology at low temperatures and thus endows the ENR/DTSA/SCMC composites with healing properties. The ENR/DTSA/SCMC-10 composite has a considerable healing efficiency of about 96 % after healing at 80 °C for 12 h.
由于 3D 不可逆的共价交联网络的形成,传统硫化橡胶会造成相当大的资源浪费。在橡胶网络中引入可重复形成的共价键,如二硫键,是解决上述问题的一种可行方法。然而,仅含可重复二硫键的橡胶的力学性能无法满足大多数实际应用的要求。本文制备了一种由羧甲基纤维素钠(CMC)增强的生物基环氧化天然橡胶(ENR)复合材料。CMC 中的羟基与 ENR 链上的亲水基团之间形成大量氢键,这使得 ENR/2,2'-二硫代二苯甲酸(DTSA)/CMC 复合材料具有增强的力学性能。当 CMC 的用量为 20phr 时,复合材料的拉伸强度从 3.0 MPa 增加到 10.4 MPa,几乎是未添加 CMC 的 ENR/DTSA 复合材料的 3.5 倍。同时,DTSA 通过引入可重复的二硫键与 ENR 共价交联,使交联网络在低温下能够重新排列其拓扑结构,从而赋予 ENR/DTSA/SCMC 复合材料自修复性能。在 80°C 下修复 12 小时后,ENR/DTSA/SCMC-10 复合材料的修复效率约为 96%。