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Role of DTAB and SDS in Bubble-Particle Attachment: AFM Force Measurement, Attachment Behaviour Visualization, and Contact Angle Study

机译:DTAB和SDS在气泡-颗粒附着中的作用:AFM力测量,附着行为可视化和接触角研究

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Atomic force microscopy (AFM) and contact angle measurements were used to study the role of dodecyltrimethylammonium bromide (DTAB) and sodium dodecyl sulphate (SDS) in bubble-particle attachment. The results show that the forces between bubbles and the hydrophilic glass particle were always repulsive in the absence of DTAB and SDS. An attractive hydrophobic force was induced when the particles became hydrophobic, and the force was proportional to the water contact-angle. In the presence of DTAB and SDS, the cationic head group of DTAB adsorbed onto the negative hydrophilic glass surface as a monolayer and thus induced a hydrophobic force. However, at a high DTAB concentration, the DTAB molecules began to adsorb as a bilayer, reverting back to a hydrophilic surface. The hydrophobic force disappeared and the water film between the bubble and particle was stabilised under the repulsive double-layer force. The anionic SDS molecules could not adsorb onto the hydrophilic glass surface. The repulsive force always dominated the bubble-particle interaction. In the case of hydrophobic glass, the hydrophobic force decreased, and even disappeared, with the addition of DTAB and SDS. All the findings from the AFM force curves were consistent with the attachment behaviour and contact angle results.
机译:原子力显微镜(AFM)和接触角测量用于研究十二烷基三甲基溴化铵(DTAB)和十二烷基硫酸钠(SDS)在气泡-颗粒附着中的作用。结果表明,在没有DTAB和SDS的情况下,气泡和亲水性玻璃颗粒之间的力始终是排斥的。当颗粒变为疏水性时,会产生有吸引力的疏水力,并且该力与水的接触角成比例。在DTAB和SDS的存在下,DTAB的阳离子头基作为单层吸附到负性亲水性玻璃表面上,从而引起疏水力。但是,在高DTAB浓度下,DTAB分子开始以双层形式吸附,恢复为亲水性表面。在排斥双层力的作用下,疏水力消失,气泡和颗粒之间的水膜稳定。阴离子SDS分子无法吸附到亲水性玻璃表面上。排斥力始终主导着气泡-颗粒之间的相互作用。对于疏水性玻璃,通过添加DTAB和SDS,疏水性降低,甚至消失。原子力显微镜力曲线的所有发现与附着行为和接触角结果一致。

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