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Nitro-Group Functionalization of Dopamine and its Contribution to the Viscoelastic Properties of Catechol-Containing Nanocomposite Hydrogels

机译:多巴胺的硝基基团官能化及其对含邻苯二酚的纳米复合水凝胶粘弹性的贡献

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摘要

Linear polyacrylamide (PAAm) is modified with dopamine or nitrodopamine (PAAm-D and PAAm-ND, respectively) to evaluate the effect of nitro-group modification on the interfacial binding properties of polymer-bound catechol. Nanocomposite hydrogels are prepared by mixing PAAm-based polymers with Laponite and the viscoelastic properties of these materials are determined using oscillatory rheometry. The incorporation of a small amount of catechol (≈0.1 wt% in swollen hydrogel) drastically increases the shear moduli by 1–2 orders of magnitude over those of the catechol-free control. Additionally, PAAm-ND exhibits higher shear moduli values than PAAm-D across the whole pH range tested (pH 3.0–9.0). Based on the calculated effective crosslinking density, effective functionality, and molecular weight between crosslinks, nitro-group functionalization of dopamine results in a polymer network with increased crosslinking density and crosslinking points with higher functionality. Nitro-functionalization enhances the interfacial binding property of dopamine and increases its resistant to oxidation, which results in nanocomposite hydrogels with enhanced stiffness and a viscous dissipation property.
机译:线性聚丙烯酰胺(PAAm)用多巴胺或硝基多巴胺(分别是PAAm-D和PAAm-ND)改性,以评估硝基基团改性对聚合物结合的邻苯二酚的界面结合性能的影响。纳米复合水凝胶是通过将基于PAAm的聚合物与Laponite混合而制备的,并使用振荡流变法测定了这些材料的粘弹性。与不含邻苯二酚的对照相比,加入少量的邻苯二酚(在溶胀的水凝胶中约为0.1 wt%)可将剪切模量急剧提高1-2个数量级。此外,在整个测试的pH范围内(pH 3.0-9.0),PAAm-ND的剪切模量值均高于PAAm-D。基于计算的有效交联密度,有效官能度和交联之间的分子量,多巴胺的硝基官能化导致聚合物网络的交联密度增加,交联点具有更高的官能度。硝基官能化增强了多巴胺的界面结合性能,并提高了其对氧化的抵抗力,这导致纳米复合水凝胶具有增强的刚度和粘性耗散性能。

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