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Effect of Water Interactionson Polyvinylamine atDifferent pHs for Membrane Gas Separation

机译:水相互作用的影响在聚乙烯胺上不同pH值用于膜气分离

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摘要

In our previous work, it was shown that the separation performance of the fixed-site-carrier polyvinylamine (PVAm) composite membrane increases exponentially with increasing relative humidity content in the gas. Through these efforts, it has been important to develop a greater understanding of the relationship between the water, structural, and interfacial properties of the PVAm surface. The degree of hydrophilicity of a given surface plays a crucial role in the separation performance of the membrane when exposed to a humidified gas. Therefore, in the current work, the wettability properties of PVAm at different pHs have been studied by experimental measurements and molecular dynamic simulations. It was confirmed that the intramolecular interactions are not linearly dependent on pH. As well as the H-bonding between protonated and unprotonated amine groups, the conformation polymer chain and the distribution charge density play a crucial role in the surface stability and wettability properties.
机译:在我们以前的工作中,已表明,固定位点-载体聚乙烯胺(PVAm)复合膜的分离性能随着气体中相对湿度的增加呈指数增长。通过这些努力,对PVAm表面的水,结构和界面特性之间的关系有更深入的了解非常重要。当暴露于湿润的气体中时,给定表面的亲水性程度在膜的分离性能中起着至关重要的作用。因此,在目前的工作中,已经通过实验测量和分子动力学模拟研究了在不同pH下PVAm的润湿性。证实了分子内相互作用不线性依赖于pH。除了质子化和未质子化的胺基之间的氢键键,构象聚合物链和分布电荷密度在表面稳定性和可湿性方面也起着至关重要的作用。

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