首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Robust and self-healable nanocomposite physical hydrogel facilitated by the synergy of ternary crosslinking points in a single network
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Robust and self-healable nanocomposite physical hydrogel facilitated by the synergy of ternary crosslinking points in a single network

机译:单一网络中三元交联点的协同作用促进了稳健且可自我修复的纳米复合物理水凝胶

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摘要

Acrylamide (AM) and a small amount of stearyl methacrylate (C18) hydrophobic monomer copolymerize to graft on the surface of vinyl hybrid silica nanoparticles (VSNPs), forming nanobrush gelators, thereby constructing ternarily crosslinked nanocomposite physical hydrogels (TC-NCP gels). The TC-NCP gel is composed of a single network ternarily crosslinked by hydrogen bonds and hydrophobic interactions among the grafting polymer chains as physical cross-linking points and thus the polymer grafted VSNPs as analogous covalent crosslinking points. Under stretching, the physical crosslinking points successively break to gradually dissipate energy and then recombine to homogenize the network. During the stretching process, the polymer chains grafted VSNPs can homogenize the stress distribution as transferring centers. The synergy of the ternary crosslinking points leads the TC-NCP gels to dissipate more energy and redistribute the stress more effectively when compared with hydrogels dually crosslinked by both hydrogen bonds and VSNPs as analogous covalent crosslinking points (without hydrophobic interactions) and by both hydrogen bonds and hydrophobic interactions (without VSNPs). As a result, the TC-NCP gels demonstrate remarkably improved mechanical properties, including tensile strength of 256 kPa, stretch ratio at break of 28.23 and toughness of 1.92 MJ m(-3) at a water content of 90%. Pure shear test shows that the TC-NCP gel is able to resist notch propagation by micro-crack development from the notch tip to the whole gel network and has a high tearing energy of 1.21 x 104 J m(-2). The dynamic nature of the network endows the TC-NCP gels with excellent self-healing ability. The results evidently indicate that constructing a single gel network with hierarchical crosslinking points is a versatile method to fabricate robust hydrogels.
机译:丙烯酰胺(AM)和少量甲基丙烯酸十八烷基酯(C18)疏水性单体共聚接枝在乙烯基杂化二氧化硅纳米粒子(VSNPs)的表面上,形成纳米刷胶凝剂,从而构建三元交联的纳米复合物理水凝胶(TC-NCP凝胶)。 TC-NCP凝胶由单个网络组成,该网络通过氢键和接枝聚合物链之间的疏水相互作用作为物理交联点,从而将聚合物接枝的VSNP作为相似的共价交联点进行三元交联。在拉伸下,物理交联点先后破裂,逐渐耗散能量,然后重新结合,使网络均匀化。在拉伸过程中,接枝VSNP的聚合物链可以使应力分布均匀化,成为传递中心。与通过氢键和VSNPs作为相似的共价交联点(无疏水作用)和通过两个氢键双重交联的水凝胶相比,三元交联点的协同作用使TC-NCP凝胶耗散更多的能量并更有效地重新分配了应力。和疏水性相互作用(无VSNP)。结果,TC-NCP凝胶显示出显着改善的机械性能,包括256 kPa的拉伸强度,28.23的断裂拉伸比和在90%水分含量下的1.92 MJ m(-3)韧性。纯剪切试验表明,TC-NCP凝胶能够抵抗从缺口尖端到整个凝胶网络的微裂纹发展而产生的缺口传播,并具有1.21 x 104 J m(-2)的高撕裂能量。网络的动态性质使TC-NCP凝胶具有出色的自我修复能力。结果显然表明,构建具有分层交联点的单个凝胶网络是制造坚固水凝胶的通用方法。

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