School of Chemistry and Chemical Engineering, Jiangsu University, Zhenjiang, China.
J Sep Sci. 2013 Oct;36(19):3285-94. doi: 10.1002/jssc.201300494. Epub 2013 Aug 27.
Porous/magnetic molecularly imprinted polymers (PM-MIPs) were prepared by Pickering emulsion polymerization. The reaction was carried out in an oil/water emulsion using magnetic halloysite nanotubes as the stabilizer instead of a toxic surfactant. In the oil phase, the imprinting process was conducted by radical polymerization of functional and cross-linked monomers, and porogen chloroform generated steam under the high reaction temperature, which resulted in some pores decorated with easily accessible molecular binding sites within the as-made PM-MIPs. The characterization demonstrated that the PM-MIPs were porous and magnetic inorganic-polymer composite microparticles with magnetic sensitivity (M(s) = 0.7448 emu/g), thermal stability (below 473 K) and magnetic stability (over the pH range of 2.0-8.0). The PM-MIPs were used as a sorbent for the selective binding of lambdacyhalothrin (LC) and rapidly separated under an external magnetic field. The Freundlich isotherm model gave a good fit to the experimental data. The adsorption kinetics of the PM-MIPs was well described by pseudo-second-order kinetics, indicating that the chemical process could be the rate-limiting step in the adsorption of LC. The selective recognition experiments exhibited the outstanding selective adsorption effect of the PM-MIPs for target LC. Moreover, the PM-MIPs regeneration without significant loss in adsorption capacity was demonstrated by at least four repeated cycles.
多孔/磁性分子印迹聚合物(PM-MIPs)是通过 Pickering 乳液聚合制备的。该反应在油包水乳液中进行,使用磁性埃洛石纳米管作为稳定剂代替有毒表面活性剂。在油相中,通过功能单体和交联单体的自由基聚合进行印迹过程,且在高温反应条件下,致孔剂氯仿产生蒸汽,导致在所得 PM-MIPs 内形成一些具有易于接近的分子结合位点的多孔结构。表征结果表明,PM-MIPs 是多孔和磁性无机-聚合物复合材料的磁性微球,具有磁灵敏度(M(s) = 0.7448 emu/g)、热稳定性(低于 473 K)和磁稳定性(pH 值范围 2.0-8.0)。PM-MIPs 被用作 lambdacyhalothrin(LC)的选择性结合的吸附剂,并在外磁场下快速分离。Freundlich 等温线模型很好地拟合了实验数据。PM-MIPs 的吸附动力学很好地符合准二级动力学模型,表明在 LC 的吸附过程中,化学过程可能是限速步骤。选择性识别实验显示了 PM-MIPs 对目标 LC 的出色选择性吸附效果。此外,通过至少四个重复循环,证明了 PM-MIPs 在再生过程中没有明显的吸附容量损失。