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首页> 外文期刊>Environmental Science: Nano >Water-compatible surface molecularly imprinted polymers with synergy of bi-functional monomers for enhanced selective adsorption of bisphenol A from aqueous solutionf
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Water-compatible surface molecularly imprinted polymers with synergy of bi-functional monomers for enhanced selective adsorption of bisphenol A from aqueous solutionf

机译:具有双功能单体协同作用的水相容性表面分子印迹聚合物,可增强双酚A从水溶液中的选择性吸附f

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摘要

Water-compatible molecularly imprinted polymers (MIPs) with dual monomer-template interactions were synthesized via the synergy of bi-functional monomers of water-soluble 2-acrylamido-2-methylpropanesulfonic acid (AMPS) and styrene (St) for the selective adsorption of bisphenol A (BPA) from -' aqueous media using porous graphene oxide as a support. Both hydrogen bonds and π-π interactions are responsible for the adsorption of BPA on the synthesized MIPs. The formation and structure of the MIPs are verified by Fourier transform infrared spectroscopy, thermogravimetric analysis, transmission electron microscopy and dispersion analysis in water. The adsorption results show that the adsorption capacity of MIPs is greatly enhanced by virtue of the synergy of AMPS and St. The MIPs prepared with a molar ratio (AMPS: St) of 2.5:2.5 exhibit the highest adsorption capacity (up to 85.7 mg g~(-1) at 293 K) toward BPA in aqueous media. The kinetics and isotherm data can be well fitted with the pseudo-second-order kinetic model and the Freundlich isotherm, respectively. Competitive adsorption experiments demonstrate that the synthesized MIPs display excellent selectivity toward BPA against analogue molecules. The MIPs show good recoverability and exhibit excellent adsorption affinity toward BPA even in complex river water. This work provides a versatile approach for the fabrication of high performance MIPs for application in aqueous environments.
机译:通过水溶性2-丙烯酰胺基-2-甲基丙烷磺酸(AMPS)和苯乙烯(St)的双功能单体的协同作用,合成了具有双重单体-模板相互作用的水相容性分子印迹聚合物(MIP),以选择性吸附使用多孔氧化石墨烯作为载体,从水性介质中提取双酚A(BPA)。氢键和π-π相互作用都负责BPA在合成MIP上的吸附。通过傅立叶变换红外光谱,热重分析,透射电子显微镜和水中的分散分析验证了MIP的形成和结构。吸附结果表明,通过AMPS和St的协同作用,MIPs的吸附能力大大提高。以摩尔比(AMPS:St)为2.5:2.5制备的MIPs表现出最高的吸附能力(高达85.7 mg g)。在水性介质中朝BPA方向(〜(-1)在293 K)。动力学和等温线数据可以分别分别与拟二阶动力学模型和Freundlich等温线拟合。竞争性吸附实验表明,合成的MIP对BPA具有针对类似分子的出色的选择性。即使在复杂的河水中,MIP仍显示出良好的可回收性,并且对BPA表现出优异的吸附亲和力。这项工作为制造适用于水性环境的高性能MIP提供了一种通用的方法。

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