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阳离子共聚物与带相反电荷的表面活性剂的混合物:聚合物电荷密度和离子强度对二氧化硅-水界面吸附行为的影响。

Mixtures of cationic copolymers and oppositely charged surfactants: effect of polymer charge density and ionic strength on the adsorption behavior at the silica-aqueous interface.

机构信息

Physical Chemistry 1, Center for Chemistry and Chemical Engineering, Lund University, SE-221 00 Lund, Sweden.

出版信息

ACS Appl Mater Interfaces. 2012 Mar;4(3):1500-11. doi: 10.1021/am201740k. Epub 2012 Mar 8.

Abstract

This study addresses polymer-surfactant interactions at solid-liquid interfaces and how these can be manipulated by modulating the association between ionic surfactant and oppositely charged polymer, with a particular focus on electrostatic interactions. For this purpose, the interaction of a series of cationic copolymers of vinylpyrrolidone and quaternized vinylimidazol with sodium dodecyl sulfate (SDS) at the silica-aqueous interface was followed by in situ ellipsometry. To reveal the nature of the interaction, we performed measurements for different copolyion charge densities, in the absence and presence of added salt. The path-dependence of the interaction was studied by comparing the adsorption under two different conditions, adsorption from premixed solutions and sequential addition of surfactant to the polymer solution, but the same end state. The reversibility of the adsorption process was studied by following the effect of dilution on the adsorbed layer. All copolyions adsorbed to both silica and hydrophobized silica, revealing the importance of both hydrophobic and electrostatic attractive interactions. On both types of surface, an increase in adsorbed amount was found on lowering the fraction of charged units. An increased ionic strength gave an increased adsorbed amount in all cases, but especially on hydrophobic surfaces. The adsorbed amount on silica from mixtures of the copolyions with SDS peaked at an SDS concentration corresponding closely to the concentration of cationic charges of the different polyions. Around the region of charge equivalence, there was also a phase separation in the bulk. At higher concentrations of SDS, a redissolution in the bulk, and a decrease in adsorbed amount, occurred as a result of excess SDS binding to the complexes. For the most highly charged polyions, we observed a decrease in adsorbed amount, and a shift in the adsorption maxima to lower SDS concentrations, with increasing ionic strength.

摘要

本研究探讨了固液界面上的聚合物-表面活性剂相互作用,以及如何通过调节离子型表面活性剂与带相反电荷的聚合物之间的缔合来操纵这些相互作用,特别关注静电相互作用。为此,我们通过原位椭圆光度法研究了一系列乙烯基吡咯烷酮和季铵化乙烯基咪唑的阳离子共聚物与十二烷基硫酸钠(SDS)在二氧化硅-水界面上的相互作用。为了揭示相互作用的本质,我们在没有和有添加盐的情况下,针对不同共聚离子电荷密度进行了测量。通过比较在两种不同条件下(从预混溶液中吸附和顺序向聚合物溶液中添加表面活性剂,但达到相同的最终状态)的吸附情况,研究了相互作用的路径依赖性。通过研究稀释对吸附层的影响,研究了吸附过程的可逆性。所有共聚物都吸附在二氧化硅和疏水化二氧化硅上,这表明疏水性和静电吸引相互作用都很重要。在两种类型的表面上,随着带电荷单元分数的降低,吸附量增加。在所有情况下,离子强度的增加都会导致吸附量增加,但在疏水表面上增加得更多。从共聚物与 SDS 的混合物中在二氧化硅上的吸附量随着 SDS 浓度的增加而增加,这与不同聚离子的阳离子电荷浓度非常接近。在电荷当量区域附近,在本体中也发生了相分离。在 SDS 浓度较高的情况下,由于过量的 SDS 结合到复合物中,在本体中重新溶解,吸附量减少。对于带电荷最多的聚离子,我们观察到吸附量减少,并且随着离子强度的增加,吸附最大值向 SDS 浓度较低的方向移动。

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