首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Probing Interactions between Air Bubble and Hydrophobic Polymer Surface: Impact of Solution Salinity and Interfacial Nanobubbles
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Probing Interactions between Air Bubble and Hydrophobic Polymer Surface: Impact of Solution Salinity and Interfacial Nanobubbles

机译:探究气泡与疏水性聚合物表面之间的相互作用:溶液盐度和界面纳米气泡的影响

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The interactions between air bubbles and hydrophobic polymer surfaces in aqueous media play important roles in many industrial and engineering processes. In this work, the interaction forces between air bubble and a model hydrophobic polymer-polystyrene (PS) in NaCl solutions (1 mM to 1000 mM) were directly measured using a bubble probe atomic force microscope (AFM) technique, and the measured forces were analyzed by a theoretical model based on Reynolds lubrication theory and augmented Young-Laplace equation including the influence of disjoining pressure. It was found that the theoretical analysis, by assuming that the PS surface was a pristine and bare polymer surface in aqueous solutions, could not fully agree with the experimental force measurements at intermedium salinity condition (i.e., 100 mM NaCl), and the discrepancy could not be described by the classical Derjaguin-Landau-Verwey-Overbeek (DLVO) theory even including the effects of non-DLVO interactions such as hydrophobic interaction. Atomic force microscope (AFM) imaging demonstrated that the above discrepancy was caused by the presence of interfacial nanobubbles (INBs) on the hydrophobic PS surface. The solution salinity was found to significantly affect the size and surface coverage of INBs on the PS surface, thereby influencing the surface forces. At high NaCl concentration (e.g., 500 and 1000 mM), the INB formation (and its impact on the surface interactions) and electric double layer repulsion were highly suppressed, and the bubble-PS attachment was observed attributing to their hydrophobic attraction with a decay length of similar to 0.75 +/- 0.05 nm. The results agree with our previous surface force measurements between two PS surfaces using a surface forces apparatus. This work provides useful insights into the interaction mechanism between air bubbles and hydrophobic polymer surfaces, as well as the influence of solution salinity and interfacial nanobubbles on the bubble-polymer interaction.
机译:气泡和水性介质中疏水性聚合物表面之间的相互作用在许多工业和工程过程中起着重要作用。在这项工作中,使用气泡探针原子力显微镜(AFM)技术直接测量了气泡与NaCl溶液(1 mM至1000 mM)中的模型疏水性聚合物-聚苯乙烯(PS)之间的相互作用力,通过基于雷诺润滑理论和增强的Young-Laplace方程的理论模型进行分析,包括分离压力的影响。通过理论分析,假设水溶液中的PS表面是原始的且聚合物表面是裸露的,则与中间盐度条件(即100 mM NaCl)下的实验力测量值不能完全吻合,并且差异可以经典Derjaguin-Landau-Verwey-Overbeek(DLVO)理论没有描述,甚至包括非DLVO相互作用(例如疏水相互作用)的影响。原子力显微镜(AFM)成像表明,上述差异是由于疏水性PS表面上存在界面纳米气泡(INB)引起的。发现溶液盐度显着影响PS表面上INB的大小和表面覆盖率,从而影响表面力。在高NaCl浓度(例如500和1000 mM)下,高度抑制了INB的形成(及其对表面相互作用的影响)和双电层排斥,并且观察到气泡-PS附着归因于它们的疏水吸引而衰减长度类似于0.75 +/- 0.05 nm。结果与我们先前使用表面力设备在两个PS表面之间进行的表面力测量结果吻合。这项工作提供了有用的见解,气泡与疏水性聚合物表面之间的相互作用机制,以及溶液盐度和界面纳米气泡对气泡-聚合物相互作用的影响。

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