首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >A Combined Streaming-Potential Optical Reflectometer for Studying Adsorption at the Water/Solid Surface
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A Combined Streaming-Potential Optical Reflectometer for Studying Adsorption at the Water/Solid Surface

机译:组合式流动电势光反射仪,用于研究水/固体表面的吸附

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摘要

A novel in-situ streaming-potential optical reflectometry apparatus (SPOR) was constructed and utilized to probe the molecular architecture of aqueous adsorbates on a negatively charged silica surface.By combining optical reflectometry and electrokinetic streaming potentials,we measure simultaneously the adsorption density,GAMMA,and zeta potential,xi,in a rectangular flow cell constructed with one transparent wall.Both dynamic and equilibrium measurements are possible,allowing the study of sorption kinetics and reversibility.Using SPOR,we investigate the adsorption of a classic nonionic surfactant (pentaethylene glycol monododecyl ether,C_(12)E_5),a simple cationic surfactant (hexadecyl trimethylammonium bromide,CTAB) of opposite charge to that of the substrate surface,and two cationic polyelectrolytes (poly(2-(dimethylamino)ethyl methacrylate),PDAEMA;(poly(propyl methacrylate) trimethylammonium chloride,MAPTAC).For the polyethylene oxide nonionic surfactant,bilayer adsorption is established above the critical micelle concentration (cmc) both from the adsorption amounts and from the interpretation of the observed xi potentials.Near adsorption saturation,CTAB also forms bilayer structures on silica.Here,however,we observe a strong charge reversal of the surface.The SPOR data,along with Gouy-Chapman theory,permit assessment of the net ionization fraction of the CTAB bilayer at 10% so that most of the adsorbed CTAB molecules are counterion complexed.The adsorption of both C_(12)E_5 and CTAB is reversible.The adsorption of the cationic polymers,however,is completely irreversible to a solvent wash.As with CTAB,both PDAEMA and MAPTAC demonstrate strong charge reversal.For the polyelectrolyte molecules,however,the adsorbed layer is thin and flat.Here also,a Gouy-Chapman analysis shows that less than 20% of the adsorbed layer is ionized.Furthermore,the amount of charge reversal is inversely proportional to the Debye length in agreement with available theory.SPOR provides a new tool for elucidating aqueous adsorbate molecular structure at solid surfaces.
机译:构造了一种新型的原位流电势光学反射仪(SPOR)并用于探测带负电荷的二氧化硅表面上的水性吸附物的分子结构。结合光反射率和电动流势,我们同时测量了吸附密度,GAMMA在具有一个透明壁的矩形流通池中,Zeta电位和xi。可以进行动态和平衡测量,从而研究吸附动力学和可逆性。使用SPOR,我们研究了经典的非离子表面活性剂(五乙二醇)的吸附单十二烷基醚C_(12)E_5),与基材表面电荷相反的简单阳离子表面活性剂(十六烷基三甲基溴化铵CTAB)和两个阳离子聚电解质(聚(2-(二甲氨基)乙基甲基丙烯酸酯),PDAEMA;(聚(甲基丙烯酸丙酯)三甲基氯化铵(MAPTAC)。对于聚环氧乙烷非离子表面活性剂,双层吸附是可行的从吸附量和所观察到的xi电位的解释来看,CTAB均高于临界胶束浓度(cmc)。在吸附饱和附近,CTAB还在二氧化硅上形成双层结构。但是,我们观察到了表面强烈的电荷反转。 SPOR数据与Gouy-Chapman理论一起允许对CTAB双层的净电离分数进行10%的评估,从而使大部分吸附的CTAB分子与反离子络合。C_(12)E_5和CTAB的吸附都是可逆的然而,阳离子聚合物的吸附对于溶剂洗涤而言是完全不可逆的。与CTAB一样,PDAEMA和MAPTAC都显示出强的电荷反转性。然而,对于聚电解质分子,吸附层薄而平坦。 Gouy-Chapman分析表明,不到20%的吸附层被电离。此外,电荷逆转的数量与Debye长度成反比,与现有理论一致。SPOR提供了一个阐明固体表面水吸附分子结构的新工具。

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