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Poly(vinylamine) microgel–dextran composite hydrogels: Characterisation; properties and pH-triggered degradation

机译:聚(乙烯胺)微凝胶 - 葡聚糖复合水凝胶:表征;性质和pH引发的降解

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摘要

The present study involves an investigation of the formation, characterisation and triggered-degradation of mixed dispersions involving cationic poly(vinylamine-co-bis(ethyl vinylamine) ether) (PVAM-BEVAME) microgel (MG) particles and partially oxidised dextran (Dexox). In this approach to colloidal hydrogel composite formation, imine bonds were formed by reaction between aldehyde groups of Dexox and the primary amine groups on the MG particles. The composite hydrogels contained MG particles that were externally cross-linked by Dexox to form an elastically effective network with high storage modulus (G′) values and low tan δ (=G″/G′, where G″ is the loss modulus) values. The G′ values for the MG–Dexox gels increased exponentially with increasing mass ratio (MR) of Dexox to MG. Interestingly, the yield strains determined from rheology also increased with MR and yield strains of up to 130% were measured. Au nanoparticles of comparable size to the Dexox chains adsorbed to the surface of the MG particles, which suggests that the pore size of the MG particles may have been smaller than that of the Dexox coils. The MG–Dexox gels were also subjected to acidic conditions to demonstrate pH-triggered gel network breakdown via imine bond cleavage. We show that new PVAM MG/aldehyde mixtures studied here for the first time form ductile and versatile colloidal gels and our new method provides a route to increasing ductility of hydrogels containing MG particles.
机译:本研究涉及涉及阳离子聚(乙烯基胺-共-双(乙基乙烯基胺)醚)(PVAM-BEVAME)微凝胶(MG)颗粒和部分氧化的葡聚糖(Dexox)的混合分散体的形成,表征和引发降解的研究。在这种形成胶体水凝胶复合物的方法中,亚胺键是通过Dexox的醛基与MG颗粒上的伯胺基之间的反应形成的。复合水凝胶包含被Dexox外部交联的MG颗粒,形成具有高储能模量(G')值和低tanδ(= G“ / G',其中G”为损耗模量)值的弹性有效网络。 MG-Dexox凝胶的G'值随着Dexox与MG的质量比(MR)的增加而呈指数增加。有趣的是,由流变学确定的屈服应变也随MR的增加而增加,测得的屈服应变高达130%。与Dexox链相当大小的Au纳米颗粒吸附在MG颗粒的表面,这表明MG颗粒的孔径可能小于Dexox线圈的孔径。 MG-Dexox凝胶也经受了酸性条件的考验,以证明通过亚胺键断裂引起的pH触发的凝胶网络破裂。我们表明,本文首次研究的新PVAM MG /醛混合物形成了韧性和通用胶体凝胶,我们的新方法为增加含MG颗粒的水凝胶的延展性提供了一条途径。

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