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Development of Molecularly Imprinted Polymer in Porous Film Format for Binding of Phenol and Alkylphenols from Water

机译:多孔膜形式分子印迹聚合物与水中苯酚和烷基酚结合的研究

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摘要

Molecularly imprinted polymers (MIPs) were fabricated on glass slides with a “sandwich” technique giving ~20 μm thick films. Methanol/water as a solvent, and polyethyleneglycol and polyvinylacetate as solvent modifiers, were used to give a porous morphology, which was studied with scanning electron microscopy and gravimetric analysis. Various MIPs were synthesized through non-covalent imprinting with phenol as the template; itaconic acid, 4-vinylpyridine, and styrene as monomers; ethylene glycol dimethacrylate, triethylene glycol dimethacrylate, and pentaerythritol triacrylate (PETA) as cross-linkers. Binding and imprinting properties of the MIPs were evaluated based on phenol adsorption isotherms. Since phenol has only one weakly acidic hydroxyl group and lacks unique structural characteristics necessary for binding specificity, the preparation of selective MIPs was challenging. The recognition of phenol via hydrogen bonding is suppressed in water, while hydrophobic interactions, though promoted, are not specific enough for highly-selective phenol recognition. Nevertheless, the styrene-PETA MIP gave modest imprinting effects, which were higher at lower concentrations (Imprinting Factor (IF) = 1.16 at 0.5 mg·L−1). The isotherm was of a Freundlich type over 0.1–40 mg·L−1 and there was broad cross-reactivity towards other structurally similar phenols. This shows that phenol MIPs or simple adsorbents can be developed based on styrene for hydrophobic binding, and PETA to form a tighter, hydrophilic network.
机译:分子印迹聚合物(MIP)使用“三明治”技术在载玻片上制成,厚度约为20μm。使用甲醇/水作为溶剂,并使用聚乙二醇和聚乙酸乙烯酯作为溶剂改性剂,以形成多孔形态,并通过扫描电子显微镜和重量分析法对其进行了研究。通过以苯酚为模板进行非共价印迹,合成了各种MIP。衣康酸,4-乙烯基吡啶和苯乙烯作为单体;乙二醇二甲基丙烯酸酯,三乙二醇二甲基丙烯酸酯和季戊四醇三丙烯酸酯(PETA)作为交联剂。基于酚吸附等温线评估了MIP的结合和印迹特性。由于苯酚只有一个弱酸性羟基,并且缺乏结合特异性所必需的独特结构特征,因此选择性MIP的制备具有挑战性。在水中抑制了通过氢键对苯酚的识别,尽管尽管促进了疏水性相互作用,但对于高选择性的苯酚识别仍不够特异性。尽管如此,苯乙烯-PETA MIP仍具有中等的印迹效果,在较低的浓度下印迹效果更高(在0.5 mg·L -1 时印迹因子(IF)= 1.16)。等温线为Freundlich类型,超过0.1–40 mg·L -1 ,并且与其他结构相似的酚具有广泛的交叉反应性。这表明可以基于苯乙烯开发用于疏水结合的酚MIP或简单的吸附剂,并基于PETA形成更紧密的亲水网络。

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