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Combining Pickering Emulsion Polymerization with Molecular Imprinting to Prepare Polymer Microspheres for Selective Solid-Phase Extraction of Malachite Green

机译:将Pickering乳液聚合与分子印迹相结合以制备用于选择性固相萃取孔雀石绿的聚合物微球

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摘要

Malachite green (MG) is currently posing a carcinogenic threat to the safety of human lives; therefore, it is highly desirable to develop an effective method for fast trace detection of MG. Herein, for the first time, this paper presents a systematic study on polymer microspheres, being prepared by combined Pickering emulsion polymerization and molecular imprinting, to detect and purify MG. The microspheres, molecularly imprinted with MG, show enhanced adsorption selectivity to MG, despite a somewhat lowered adsorption capacity, as compared to the counterpart without molecular imprinting. Structural features and adsorption performance of these microspheres are elucidated by different characterizations and kinetic and thermodynamic analyses. The surface of the molecularly imprinted polymer microspheres (M-PMs) exhibits regular pores of uniform pore size distribution, endowing M-PMs with impressive adsorption selectivity to MG. In contrast, the microspheres without molecular imprinting show a larger average particle diameter and an uneven porous surface (with roughness and a large pore size), causing a lower adsorption selectivity to MG despite a higher adsorption capacity. Various adsorption conditions are investigated, such as pH and initial concentration of the solution with MG, for optimizing the adsorption performance of M-PMs in selectively tackling MG. The adsorption kinetics and thermodynamics are deeply discussed and analyzed, so as to provide a full picture of the adsorption behaviors of the polymer microspheres with and without the molecular imprinting. Significantly, M-PMs show promising solid-phase extraction column applications for recovering MG in a continuous extraction manner.
机译:孔雀石绿(MG)当前对人类生命安全构成致癌威胁。因此,迫切需要开发一种有效的方法来快速检测MG。本文中,本文首次对皮克林乳液聚合和分子印迹相结合制备的聚合物微球进行了系统的研究,以检测和纯化MG。与没有分子印迹的对应物相比,分子印迹有MG的微球对MG的吸附选择性增强,尽管其吸附能力有所降低。这些微球的结构特征和吸附性能通过不同的表征以及动力学和热力学分析得以阐明。分子印迹聚合物微球(M-PMs)的表面显示出均匀孔径分布均匀的规则孔,使M-PMs对MG具有令人印象深刻的吸附选择性。相反,没有分子印迹的微球显示出较大的平均粒径和不平坦的多孔表面(具有粗糙度和大孔径),尽管具有较高的吸附能力,但对MG的吸附选择性较低。研究了各种吸附条件,例如pH和MG溶液的初始浓度,以优化M-PM在选择性粘附MG时的吸附性能。对吸附动力学和热力学进行了深入的讨论和分析,以提供带有或不带有分子印迹的聚合物微球的吸附行为的全貌。重要的是,M-PMs展示了以连续萃取方式回收MG的有前途的固相萃取柱应用。

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