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Effect of Solvents on the Adsorption Properties of Benzo[alpha]pyrene-imprinted Polymers

机译:溶剂对苯并py印迹聚合物吸附性能的影响

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摘要

Molecularly imprinted polymers (MIPs) specific for benzo[alpha]pyrene (B[alpha]P) have been synthesized in different solvents in order to study the corresponding morphological changes and adsorption properties. The adsorption capacities of the MIPs towards B[c]P were evaluated from the adsorption kinetics and isotherms. The lowest adsorption capacity (45 ng/mg) was found for MIP synthesized in chloroform, while MIP prepared in acetonitrile had the highest adsorption capacity. In order to complement the experimental observations, Hyper Chem software-based computer simulations were used to calculate the interaction energy between B[alpha]P and the functional monomer (methacrylic acid) in different solvents. The theoretical predictions correlated well with the experimental results and the method proposed in this study could be useful in the combinatorial screening of polymer precursors for the preparation of polymers with the desired properties. The presence of an organic solvent plays an important role in the formation of pores which, in turn, have a profound effect on the polymer adsorption properties.
机译:为了研究相应的形态变化和吸附特性,已经在不同溶剂中合成了对苯并[(BαP)具有特异性的分子印迹聚合物(MIP)。从吸附动力学和等温线评估了MIP对B [c] P的吸附能力。在氯仿中合成的MIP的吸附容量最低(45 ng / mg),而在乙腈中制备的MIP的吸附容量最高。为了补充实验观察,使用了基于Hyper Chem软件的计算机模拟来计算在不同溶剂中BαP与功能性单体(甲基丙烯酸)之间的相互作用能。理论预测与实验结果很好地相关,本研究中提出的方法可用于聚合物前体的组合筛选,以制备具有所需性能的聚合物。有机溶剂的存在在孔的形成中起重要作用,而孔又对聚合物的吸附性能产生深远的影响。

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