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pH effects on adsorption behavior and self-aggregation of dodecylamine at muscovite/aqueous interfaces

机译:pH对白云母/水界面吸附十二烷基胺的行为和自聚集的影响

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In this work, molecular dynamics simulation was used to examine the effect of solution pH on the adsorption behavior and self-aggregation of dodecylamine hydrochloride (DDA) on the muscovite (0 01) surface. The properties of surfactants are assessed in terms of density profiles in the direction perpendicular to the muscovite surface. Results show that although DDA can adsorb at muscovite at all pH we discussed, the self-aggregation of DDA varies significantly at different pH values. At pH 10, a compact hydrophobic monolayer forms on the muscovite surface. At pH 3, hemi-micelle aggregated structure forms with several DDA cations far away from muscovite surface. At pH 12, it has been confirmed that adsorption of DDA neutral molecules occurs with only a few DDA molecules adsorbing on muscovite directly and acting as a bridge linking the rest DDA molecules, which exists nearby muscovite surface irregularly. Density profiles revealed that at pH 10, DDA cations play a dominant role in the interaction between DDA surfactants and muscovite. While DDA molecules have difficulty in forming a hydrogen bond with the oxygen atom on the muscovite surfaces, and they co-adsorb onto muscovite through the electrostatic interactions with muscovite and hydrophobic force with DDA cations. Therefore, the hydrophobization of muscovite in the presence of DDA are higher at pH 10 than that at pH 3 and pH 12. Our results indicate that molecular dynamics simulation can be a power tool in charactering adsorption behavior of surfactants onto mineral surfaces at different pH values. (C) 2016 Elsevier Inc. All rights reserved.
机译:在这项工作中,使用分子动力学模拟来检查溶液pH值对十二烷基胺盐酸盐(DDA)在白云母(0 01)表面上的吸附行为和自聚集的影响。根据垂直于白云母表面的方向上的密度分布评估表面活性剂的性能。结果表明,尽管我们讨论了DDA可以在所有pH值吸附在白云母上,但DDA的自聚集在不同pH值下有很大差异。在pH 10下,白云母表面形成致密的疏水单层。在pH 3下,半胶束聚集的结构形成了几个远离白云母表面的DDA阳离子。在pH值为12时,已经证实DDA中性分子的吸附仅在直接吸附在白云母上的少数DDA分子发生,并充当连接其余DDA分子的桥,该DDA分子不规则地存在于白云母表面附近。密度分布图表明,在pH 10时,DDA阳离子在DDA表面活性剂与白云母之间的相互作用中起主要作用。虽然DDA分子很难与白云母表面的氧原子形成氢键,但它们通过与白云母的静电相互作用和与DDA阳离子的疏水作用共同吸附在白云母上。因此,在DDA存在下,白云母的疏水化作用在pH 10时要比在pH 3和pH 12时高。我们的结果表明,分子动力学模拟可以作为表征不同pH值下表面活性剂在矿物表面上吸附行为的有力工具。 。 (C)2016 Elsevier Inc.保留所有权利。

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