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通过粘弹性调节增强多巴胺甲基丙烯酰胺弹性体的附着力。

Enhanced adhesion of dopamine methacrylamide elastomers via viscoelasticity tuning.

机构信息

Department of Chemistry, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213, USA.

出版信息

Biomacromolecules. 2011 Feb 14;12(2):342-7. doi: 10.1021/bm101076e. Epub 2010 Dec 23.

Abstract

We present a study on the effects of cross-linking on the adhesive properties of bio-inspired 3,4-dihydroxyphenylalanine (DOPA). DOPA has a unique catechol moiety found in adhesive proteins in marine organisms, such as mussels and polychaete, which results in strong adhesion in aquatic conditions. Incorporation of this functional group in synthetic polymers provides the basis for pressure-sensitive adhesives for use in a broad range of environments. A series of cross-linked DOPA-containing polymers were prepared by adding divinyl cross-linking agent ethylene glycol dimethacrylate (EGDMA) to monomer mixtures of dopamine methacrylamide (DMA) and 2-methoxyethyl acrylate (MEA). Samples were prepared using a solvent-free microwave-assisted polymerization reaction and compared to a similar series of cross-linked MEA materials. Cross-linking with EGDMA tunes the viscoelastic properties of the adhesive material and has the advantage of not reacting with the catechol group that is responsible for the excellent adhesive performance of this material. Adhesion strength was measured by uniaxial indentation tests, which indicated that 0.001 mol % of EGDMA-cross-linked copolymer showed the highest work of adhesion in dry conditions, but non-cross-linked DMA was the highest in wet conditions. The results suggest that there is an optimal cross-linking degree that displays the highest adhesion by balancing viscous and elastic behaviors of the polymer but this appears to depend on the conditions. This concentration of cross-linker is well below the theoretical percolation threshold, and we propose that subtle changes in polymer viscoelastic properties can result in significant improvements in adhesion of DOPA-based materials. The properties of lightly cross-linked poly(DMA-co-MEA) were investigated by measurement of the frequency dependence of the storage modulus (G') and loss modulus (G''). The frequency-dependence of G' and magnitude of G'' showed gradual decreases with the fraction of EGDMA. Loosely cross-linked DMA copolymers, containing 0% and 0.001 mol % of EGDMA-cross-linked copolymers, displayed rheological behavior appropriate for pressure-sensitive adhesives characterized by a higher G' at high frequencies and lower G' at low frequencies. Our results indicate that dimethacrylate cross-linking of DMA copolymers can be used to enhance the adhesive properties of this unique material.

摘要

我们研究了交联对生物启发的 3,4-二羟基苯丙氨酸(DOPA)的粘附性能的影响。DOPA 具有独特的儿茶酚部分,存在于海洋生物(如贻贝和多毛类)的粘附蛋白中,使其在水介质中具有很强的粘附性。将该官能团引入合成聚合物中为广泛环境下使用的压敏粘合剂提供了基础。通过将二乙烯基交联剂乙二醇二甲基丙烯酸酯(EGDMA)添加到多巴胺甲基丙烯酰胺(DMA)和 2-甲氧基乙基丙烯酸酯(MEA)单体混合物中,制备了一系列交联的含 DOPA 聚合物。使用无溶剂微波辅助聚合反应制备样品,并与类似的交联 MEA 材料系列进行了比较。用 EGDMA 交联可调节粘合材料的粘弹性,并且具有不与儿茶酚基团反应的优点,儿茶酚基团是该材料具有优异粘合性能的原因。通过单轴压痕试验测量粘附强度,结果表明,在干燥条件下,0.001 mol%的 EGDMA 交联共聚物显示出最高的粘附功,但在潮湿条件下,非交联的 DMA 则具有最高的粘附功。结果表明,存在最佳交联度,通过平衡聚合物的粘性和弹性行为,可以显示出最高的粘附力,但这似乎取决于条件。该交联剂浓度远低于理论渗流阈值,我们提出聚合物粘弹性的细微变化可以导致基于 DOPA 的材料的粘附性能得到显著提高。通过测量储能模量(G')和损耗模量(G'')的频率依赖性来研究轻度交联的聚(DMA-co-MEA)的性能。G'和 G''的幅度随 EGDMA 分数的逐渐降低而逐渐降低。含有 0%和 0.001 mol%EGDMA 交联共聚物的松散交联 DMA 共聚物显示出压敏粘合剂的流变行为特征,即高频时 G'较高,低频时 G'较低。我们的结果表明,DMA 共聚物的二甲基丙烯酸酯交联可用以增强这种独特材料的粘附性能。

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