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Enhanced electro-osmosis in propylene carbonate salt solutions

机译:增强碳酸丙酯盐溶液中的电渗透

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摘要

Properties of solid-liquid interfaces and surface charge characteristics mediate ionic and molecular transport through porous systems, affecting many processes such as separations. Herein, we report experiments designed to probe the electrochemical properties of solid-liquid interfaces using a model system of a single polyethylene terephthalate (PET) pore in contact with aqueous and propylene carbonate solutions of LiClO4. First, the existence and polarity of surface charges were inferred from current-voltage curves recorded when a pore was placed in contact with a LiClO4 concentration gradient. Second, the electro-osmotic transport of uncharged polystyrene particles through the PET pore provided information on the polarity and the magnitude of the pore walls' zeta potential. Our experiments show that the PET pores become effectively positively charged when in contact with LiClO4 solutions in propylene carbonate, even though in aqueous LiClO4, the same pores are negatively charged. Additionally, the electro-osmotic velocity of the particles revealed a significantly higher magnitude of the positive zeta potential of the pores in propylene carbonate compared to the magnitude of the negative zeta potential in water. The presented methods of probing the properties of solid-liquid interfaces are expected to be applicable to a wide variety of solid and liquid systems.
机译:固液界面的性质和表面电荷特性介导了离子和分子在多孔系统中的传输,影响了分离等许多过程。在本文中,我们报告了一个实验,该实验旨在利用单个聚对苯二甲酸乙二醇酯(PET)孔与氯化锂的水溶液和碳酸丙烯酯溶液接触的模型系统来探测固液界面的电化学性质。首先,从孔与LiClO4浓度梯度接触时记录的电流-电压曲线推断表面电荷的存在和极性。其次,不带电荷的聚苯乙烯颗粒通过PET孔的电渗传输提供了有关孔壁zeta电位的极性和大小的信息。我们的实验表明,PET孔在与碳酸丙烯酯中的LiClO4溶液接触时有效带正电荷,即使在含水的LiClO4中,相同的孔也带负电荷。此外,粒子的电渗速度显示碳酸丙烯酯中孔隙的正zeta电位显著高于水中的负zeta电位。所提出的探测固液界面性质的方法有望适用于各种固液体系。

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