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首页> 外文期刊>Industrial & Engineering Chemistry Research >Design of Epoxy-Functionalized Styrene-Butadiene Rubber with Bio-Based Dicarboxylic Acid as a Cross-Linker toward the Green-Curing Process and Recyclability
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Design of Epoxy-Functionalized Styrene-Butadiene Rubber with Bio-Based Dicarboxylic Acid as a Cross-Linker toward the Green-Curing Process and Recyclability

机译:设计Epoxy-Functionalized丁苯橡胶与生物二羧酸向Green-Curing过程和交联再循环能力

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摘要

The covalently curing process for rubbers is indispensable in the rubber industry; however, there have been several inherent issues caused by traditional curing methods, such as the utilization of toxic curing additives, release of volatile organic compounds (VOCs), and difficulties in the recycling of end-of-life rubbers. In this work, a simple and effective curing strategy for epoxy-functionalized rubbers was provided to obtain a green-curing process, excellent mechanical properties, and good recyclability. The epoxy-functionalized styrene-butadiene rubbers (SBR-GMA) with different epoxy group contents were synthesized by introducing glycidyl methacrylate (GMA) during emulsion polymerization. This work highlights a green-curing strategy in which bio-based dicarboxylic acid serves as a cross-linker to cross-link epoxy-functionalized rubbers without additional additives. By the reaction between the epoxy groups in SBR-GMA rubber chains and carboxyl groups of dicarboxylic acid, the covalently cross-linking network-containing ester linkages are formed. Because the epoxy groups in SBR-GMA chains have high reactivity, the SBR-GMA with a small amount of dicarboxylic acid as a cross-linker can achieve an excellent cross-linking efficiency and rate. Additionally, the cross-linked rubber exhibits excellent mechanical properties, which could be widely regulated by changing the type and content of dicarboxylic acids. Moreover, due to the incorporation of ester linkages into the cross-linking network structure, we provide a facile and cost-effective chemical methodology for the recovery of end-of-life rubbers by the selective cleavage of the ester linkages. We envision that the epoxy-functionalized rubber may be a promising base material for the green-curing strategy, which could be interesting candidates for technical applications.
机译:橡胶的共价固化过程在橡胶工业必不可少的;有几个固有问题所致传统的治疗方法,如利用有毒固化添加剂、释放挥发性有机化合物挥发性),临终的回收困难橡胶。epoxy-functionalized橡胶养护策略提供了获得green-curing过程,良好的机械性能,很好再循环能力。丁苯橡胶(SBR-GMA)合成了不同环氧基内容通过引入甲基丙烯酸缩水甘油基酯(GMA)期间乳液聚合。green-curing生物的策略二羧酸作为交联交联epoxy-functionalized橡胶不额外的添加剂。环氧团体SBR-GMA橡胶链和二羧酸的羧基共价交联network-containing酯联系形成。SBR-GMA链有很高的反应活性,SBR-GMA与少量的二羧酸交联可以达到一个很好的交联效率和速度。交联橡胶的展品很好机械性能,可以广泛受改变的类型和内容二羧基的酸。联系到的酯交联网络结构,我们提供一个温和的和具有成本效益的化学方法临终橡胶的复苏酯的选择性裂解连杆。设想,epoxy-functionalized橡胶是一个有前途的green-curing基材策略,这可能是有趣的候选人技术的应用程序。

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