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The influence of a methyl substituent on molecularly imprinted polymer morphology and recognition - Acrylic acid versus methacrylic acid

机译:甲基取代基对分子印迹聚合物形态和识别 - 丙烯酸与甲基丙烯酸的影响

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In this report, we have investigated factors contributing to the morphology and template recognition of bupivacaine-imprinted copolymers of methacrylic acid (MAA) and ethyleneglycol dimethacrylate (EGDMA). To this end, MAA, the most commonly used functional monomer in non-covalent molecular imprinting protocols, was compared and contrasted with the closely related acrylic acid (AA) in terms of polymer morphologies, recognition characteristics, and molecular level events in the corresponding pre-polymerization mixtures. Two series of analogous bupivacaine-imprinted EGDMA-copolymers containing increasing fractions of either AA or MAA were studied through all-component MD simulations in the pre-polymerization phase, equilibrium binding experiments on corresponding synthesized polymers and morphology characterization by N-2-sorption measurements. A higher degree of hydrogen bonding frequency between respective functional monomer and bupivacaine was recorded for the mixtures containing AA compared to those containing MAA. In contrast, results from binding experiments demonstrated higher binding capacities for the polymers prepared with MAA than for those prepared with AA, which is explained by differences in polymer morphology. The surface areas and pore volumes of the AA-polymers were higher than for the MAA-polymers and the overall pore structure in the AA-polymers was ink-bottle shaped while the pores in the MAA-polymers were slit-shaped. We suggest that the methyl substituent of MAA contributes to differences in the reaction kinetics for AA and MAA during polymerization and resulted in different morphologies, in particular pore shape, which affected mass-transfer and consequently the binding qualities of the materials.
机译:在本报告中,我们对甲基丙烯酸(MAA)和乙二醇二甲基丙烯酸乙酯(EGDMA)的甲基丙酮印迹共聚物的形态和模板识别有贡献的因素。为此,将Maa是非共价分子印迹方案中最常用的功能性单体进行比较,并在相应的前前的聚合物形态,识别特征和分子水平事件方面与密切相关的丙烯酸(AA)对比 - 聚合混合物。通过预聚合阶段中的全组分MD模拟,研究了含有增加的AA或MAA级分的两系列类似的Bupivaine印迹EGDMA共聚物,通过N-2吸附测量的相应合成聚合物的平衡结合实验,对应于相应的合成聚合物和形态学表征。与含有Maa的物质相比,记录了含有Aa的混合物之间的相应官能单体和Bupivacaine之间的更高程度的氢键频率。相反,结合实验的结果表明,用MAA制备的聚合物的聚合物表现出更高的结合能力,而不是用AA制备的那些,这通过聚合物形态的差异来解释。 AA-聚合物的表面积和孔体积高于MAA-聚合物,并且AA-聚合物中的整体孔结构是墨水瓶,而MAA-聚合物中的孔被狭缝形状。我们表明MAA的甲基取代基在聚合过程中有助于AA和MAA的反应动力学的差异,并导致不同的形态,特别是孔形状,这影响了质量转移并因此影响了材料的结合品质。

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