Shagufta Afreen, Wang Lei, Fang Senbiao, Kong Qingshan, Zhang Haibo
Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences Qingdao 266101 China.
University of Chinese Academy of Sciences Beijing 100049 China.
RSC Adv. 2024 Aug 19;14(36):26198-26207. doi: 10.1039/d4ra03808h. eCollection 2024 Aug 16.
Self-healing polymers are extensively researched for the sustainability of materials. The introduction of dynamic networks instead of traditional cross-linkers for an autonomous healing mechanism in elastomers is a promising strategy for improving rubber properties. However, exchangeable covalent bonds in a dynamic network generally rely on external stimulants and fillers, which can compromise the material's performance. Herein, we introduce a mechanically strong yet resilient and independent self-healing polymeric network by dual cross-linking of bonds based on covalent and non-covalent dual interaction. The thiourea-based polymer polyether thiourea ethylene glycol (PTUEG) was blended with natural rubber (NR) and epoxidized natural rubber (ENR) to strengthen the mechanical characteristics of the material NR-ENR-PTUEG. In the material, the thermoplastic polymer PTUEG applied the thiourea linkage as a hydrogen bonding and dynamic covalent motif together to enhance mechanical adaptability in a self-healing polymer network exhibiting stiffness, toughness, and resilience, thereby extending its longevity. The resulting mechanical characteristics of the NR-ENR-PTUEG with 25 phr PTUEG exhibited tensile stress 4.8 ± 0.3 MPa and high elongation at break 833 ± 0.1%, demonstrating far better performance than that of pristine NR, and 85% recovery of its original strength at ambient temperature. The healing behaviour is strongly influenced by thiourea-based polymer contents, enabling autonomous self-healing at ambient temperature, exhibiting load-bearing efficiency in the repaired material, and maintaining their mechanical characteristics.
自修复聚合物因材料的可持续性而受到广泛研究。引入动态网络而非传统交联剂以实现弹性体的自主修复机制,是改善橡胶性能的一种有前景的策略。然而,动态网络中的可交换共价键通常依赖外部刺激剂和填料,这可能会损害材料的性能。在此,我们通过基于共价和非共价双重相互作用的键的双重交联,引入了一种机械强度高、韧性好且独立的自修复聚合物网络。将基于硫脲的聚合物聚醚硫脲乙二醇(PTUEG)与天然橡胶(NR)和环氧化天然橡胶(ENR)共混,以增强材料NR-ENR-PTUEG的机械性能。在该材料中,热塑性聚合物PTUEG将硫脲键同时用作氢键和动态共价基序,以增强自修复聚合物网络中的机械适应性,该网络具有刚度、韧性和弹性,从而延长其使用寿命。含25份PTUEG的NR-ENR-PTUEG的机械性能表现为拉伸应力4.8±0.3MPa,高断裂伸长率833±0.1%,其性能远优于原始NR,且在室温下能恢复其原始强度的85%。愈合行为受基于硫脲的聚合物含量的强烈影响,能够在室温下实现自主自修复,修复后的材料具有承载效率,并保持其机械性能。