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A Zipper-Like On/Off-Switchable Molecularly Imprinted Polymer

机译:类似于拉链的开/关可切换分子印迹聚合物

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摘要

A zipper-like on/off-switchable molecularly imprinted polymer is reported. This unique imprinted polymer was composed of template-imprinted polymeric networks that incorporate zipper-like interactions between poly(acrylamide) (PAAm) and poly(2-acrylamide-2-methyl propanesulfonic acid) (PAMPS). This polymer showed marginal recognition ability towards the imprint species under low temperature conditions, due to the inter-polymer interaction between PAAm and PAMPS, which inhibited access to the imprinted networks. In contrast, at relatively high temperatures (such as 40 °C), the polymer demonstrated significant molecular recognition ability towards the imprint species resulting from the dissociation of the interpolymer complexes of PAAm and PAMPS, which enabled access to the imprint networks. Unlike previously reported PNIPAm-based imprinted polymers, which demonstrate alterable molecular recognition simply because of the thermosensitive hydrophilicity/hydrophobicity of PNIPAm, this polymer employed a zipper-like supramolecular architecture between PAAm and PAMPS, thereby enabling switchable molecular recognition.
机译:据报道,类似拉链的开/关可切换分子印迹聚合物。这种独特的印迹聚合物由模板印迹聚合物网络组成,该模板网络在聚(丙烯酰胺)(PAAm)和聚(2-丙烯酰胺-2-甲基丙烷磺酸)(PAMPS)之间引入了类似拉链的相互作用。由于PAAm和PAMPS之间的聚合物间相互作用抑制了对印迹网络的访问,该聚合物在低温条件下对印迹物种显示出边缘识别能力。相反,在相对较高的温度(例如40°C)下,由于PAAm和PAMPS的互聚物配合物解离,该聚合物表现出了对印迹物种的显着分子识别能力,从而使人们能够进入印迹网络。与先前报道的基于PNIPAm的印迹聚合物不同,该印迹聚合物仅由于PNIPAm的热敏亲水性/疏水性而显示出可变的分子识别,而与该聚合物相比,该聚合物在PAAm和PAMPS之间采用了拉链状的超分子结构,从而可以进行分子识别。

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  • 来源
    《Advanced Functional Materials》 |2011年第17期|p.3344-3349|共6页
  • 作者单位

    Key laboratory of Pesticide &. Chemical Biology of Ministry of Education College of Chemistry Central China Normal University Wuhan 430079, PR China,Cranfield Health Vincent Building Cranfield University Cranfield, Bedfordshire, MK43 OAL, UK;

    Cranfield Health Vincent Building Cranfield University Cranfield, Bedfordshire, MK43 OAL, UK;

    Cranfield Health Vincent Building Cranfield University Cranfield, Bedfordshire, MK43 OAL, UK;

    Cranfield Health Vincent Building Cranfield University Cranfield, Bedfordshire, MK43 OAL, UK,Biosensors & Bioelectronics Centre, IFM Linkoping University SE-58183, Linkoping, Sweden;

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