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A new microemulsion approach for producing molecularly imprinted polymers with selective recognition cavities for gallic acid

机译:一种新的微乳液方法,用于生产具有对没食子酸的选择性识别腔的分子印迹聚合物

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Bulk and microemulsion systems were studied in order to obtain molecularly imprinted copolymers selective for gallic acid. Both systems contained acrylic acid as the functional monomer and ethylene glycol dimethacrylate as crosslinker. Microemulsion formation was confirmed by refractive inde× measurements and by conductivity analyses. Simple uptake tests revealed higher affinities for the microemulsion polymers; a 3.55 imprinting factor and a 0.275 g gallic acid (g polymer)~(-1) adsorption capacity were recorded. Competitive uptake tests, from an oak bark extract, were in agreement with the simple uptake results and BET analyses. Microemulsion polymer particles selectively bind 4.58 times more gallic acid molecules relative to other competitor species.
机译:为了获得对没食子酸有选择性的分子印迹共聚物,对本体和微乳液体系进行了研究。两种体系均包含丙烯酸作为功能单体和乙二醇二甲基丙烯酸酯作为交联剂。通过折射指数测量和电导率分析证实了微乳液的形成。简单的吸收测试表明,该微乳液聚合物具有更高的亲和力。记录到3.55的印迹因子和0.275g的没食子酸(g聚合物)〜(-1)的吸附容量。橡树皮提取物的竞争性吸收测试与简单的吸收结果和BET分析一致。相对于其他竞争物种,微乳液聚合物颗粒选择性地结合了4.58倍的没食子酸分子。

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