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One-pot synthesis of uniform and monodisperse superparamagnetic molecularly imprinted polymer nanospheres through a sol-gel process for selective recognition of bisphenol A in aqueous media

机译:通过溶胶 - 凝胶工艺进行均匀和单分散超顺磁性分子印迹聚合物纳米球的单壶合成,用于选择性识别水疗中的双酚A.

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摘要

In this study, a facile method was used to synthesize core-shell magnetic surface molecularly imprinted polymer (Fe3O4@MIP) nanospheres. Initially, monodisperse carboxyl-functionalized Fe3O4 nanoparticles (Fe3O4-COOH) were obtained through a one-step hydrothermal method, the imprinted layer was then synthesized directly on the surface of the magnetic core via a one-pot sol-gel method. The morphology and structural properties of the prepared magnetic nanoparticles were characterized by XRD, TEM, SEM, FT-IR and VSM. The synthesis conditions for the formation of Fe3O4@MIPs were systematically investigated. It was found that the monodispersity and morphology of Fe3O4@MIPs were highly influenced by the concentration of ammonium hydroxide (NH3 center dot H2O), the solvent composition (methanol-water), and the molar ratio of functional monomer and cross-linker. Interestingly, the preparation process of the Fe3O4@MIPs was direct and simple without further complex modification on the surface of Fe3O4 compared with conventional imprinting methods, which makes the saturation magnetization value for the Fe3O4@MIPs samples higher than those of common obtained materials. Meanwhile, the entire process of sol-gel polymerization was shortened to 1 h, which was much shorter than typical polymerization times. The adsorption performances of Fe3O4@MIPs and Fe3O4@NIPs with optimized morphologies were evaluated in bisphenol A (BPA) aqueous solution. The results showed that the product had the advantages of large adsorption capacity, good selectivity and favourable reusability, which are ascribed to its high uniformity and monodispersity. In addition, the molecular recognition of the obtained Fe3O4@MIPs was realized in aqueous media, which is conducive to practical applications on a larger scale and makes Fe3O4@MIPs an ideal adsorption and enrichment material.
机译:在该研究中,用于合成核 - 壳磁性表面分子印迹聚合物(Fe3O4 @ MIP)纳米球的体内方法。最初,通过一步水热法得到单分散羧基官能化Fe3O4纳米颗粒(Fe 3 O 4 -COOH),然后通过单壶溶胶 - 凝胶法直接在磁芯表面上合成压印层。通过XRD,TEM,SEM,FT-IR和VSM表征制备的磁性纳米颗粒的形态和结构性能。系统地研究了形成Fe3O4 @ MIPS的合成条件。发现Fe3O4 @ MIPS的单一性和形态受到氢氧化铵(NH3中心点H2O),溶剂组合物(甲醇水)和功能性单体和交联剂的摩尔比的高度影响。有趣的是,与常规压印方法相比,Fe3O4 @ MIPS的制备过程直接且简单地对Fe3O4的表面进行了进一步的复杂改性,这使得Fe3O4 @ MIPS样品的饱和磁化值高于普通所获得的材料。同时,溶胶 - 凝胶聚合的整个方法缩短至1小时,比典型的聚合时间短得多。在双酚A(BPA)水溶液中评价Fe3O4 @ MIPS和Fe3O4 @ nips的吸附性能。结果表明,该产品具有大吸附能力,选择性良好和有利可重用性的优点,归因于其高均匀性和单反面性。此外,在含水介质中实现了所得Fe3O4 @ MIPS的分子识别,其有利于更大的规模上的实际应用,并使Fe3O4 @ MIPS成为理想的吸附和富集材料。

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  • 来源
    《RSC Advances》 |2016年第70期|共10页
  • 作者单位

    Univ Sci &

    Technol China Dept Chem Hefei 230026 Anhui Peoples R China;

    Anhui Entry Exit Inspect &

    Quarantine Bur Technol Ctr Hefei 230022 Peoples R China;

    Univ Sci &

    Technol China Dept Chem Hefei 230026 Anhui Peoples R China;

    Univ Sci &

    Technol China Dept Chem Hefei 230026 Anhui Peoples R China;

    Anhui Entry Exit Inspect &

    Quarantine Bur Technol Ctr Hefei 230022 Peoples R China;

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  • 正文语种 eng
  • 中图分类 化学;
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