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Synthesis of a Novel Zn-Salphen Building Block and Its Acrylic Terpolymer Counterparts as Tunable Supramolecular Recognition Systems

机译:新型Zn-Salphen结构单元及其丙烯酸三元配体作为可调谐超分子识别系统的合成

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摘要

In this work, we present the synthesis of a novel Zn-Salphen complex containing an allyl group, which was used as building block in the further preparation of a new family of functional terpolymers. These polymers were obtained through radical co-polymerization with methyl metacrylate (MMA) and n-butyl acrylate (nBuA) in different ratios. The supramolecular recognition behavior of each polymer was evaluated via potentiometric measurements against selected anions in aqueous media. Interestingly, this proof of concept study shows that these systems were selective against only fluoride (F) or both, fluoride and acetate (OAc), by tailoring the relative content of Zn-Salphen monomer, thus making them a promising starting point for modular design of chemical sensors through straightforward synthetic approaches.
机译:在这项工作中,我们介绍了含有烯丙基的新型Zn-Salphen配合物的合成,该配合物在进一步制备功能性三元共聚物的新家族中用作构建基块。这些聚合物是通过与甲基丙烯酸甲酯(MMA)和丙烯酸正丁酯(nBuA)以不同比例进行自由基共聚而获得的。通过针对水性介质中选定阴离子的电位测量法评估每种聚合物的超分子识别行为。有趣的是,该概念验证研究表明,通过调整相对含量,这些系统仅对氟化物(F -)或氟化物和乙酸盐(OAc -)具有选择性。 Zn-Salphen单体的合成,因此使其成为通过简单的合成方法进行化学传感器模块化设计的有前途的起点。

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