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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Stability of Foam Films of Oppositely Charged Polyelectrolyte/ Surfactant Mixtures: Effect of Isoelectric Point
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Stability of Foam Films of Oppositely Charged Polyelectrolyte/ Surfactant Mixtures: Effect of Isoelectric Point

机译:带正电的聚电解质/表面活性剂混合物的泡沫膜的稳定性:等电点的影响

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In the present paper, the influence of the surfactant concentration and the degree of charge of a polymer on foam film properties of oppositely charged polyelectrolyte/surfactant mixtures has been investigated. To verify the assumption that the position of the isoelectric point (IEP) does not change the character of the foam film stabilities, the position of the IEP of the polyelectrolyte/surfactant mixtures has been shifted in two different ways. Within the first series of experiments, the foam film properties were studied using a fixed surfactant concentration of 3 X 10~(-5) M in the mixture. Due to the low surfactant concentration, this is a rather dilute system. In the second approach, a copolymer of nonionic and ionic monomer units was used to lower the charge density of the polymer. This gave rise to additional interactions between the polyelectrolyte and the surfactant, which makes the description of the foam film behavior more complex. In both systems, the same characteristics of the foam film stabilities were found: The foam film stability is reduced toward the IEP of the system, followed by a destabilization around the IEP. At polyelectrolyte concentrations above the IEP, foam films are very stable. However, the concentration range where unstable films were formed was rather broad, and the mechanisms leading to the destabilization had different origins. The results were compared with former findings on PAMPS/C_(14)TAB mixtures with an IEP of 10~(-4) M.
机译:在本文中,已经研究了表面活性剂浓度和聚合物的电荷度对带相反电荷的聚电解质/表面活性剂混合物的泡沫膜性能的影响。为了验证等电点(IEP)的位置不会改变泡沫膜稳定性的特性这一假设,聚电解质/表面活性剂混合物的IEP位置已以两种不同的方式进行了移动。在第一批实验中,使用混合物中固定的3 X 10〜(-5)M表面活性剂浓度研究了泡沫膜的性能。由于表面活性剂浓度低,这是一个相当稀的系统。在第二种方法中,使用非离子和离子单体单元的共聚物降低聚合物的电荷密度。这引起了聚电解质和表面活性剂之间的额外相互作用,这使得对泡沫膜行为的描述更加复杂。在这两个系统中,都发现了泡沫膜稳定性的相同特征:泡沫膜的稳定性朝系统的IEP方向降低,随后在IEP周围不稳定。在高于IEP的聚电解质浓度下,泡沫膜非常稳定。然而,形成不稳定膜的浓度范围相当宽,导致不稳定的机理有不同的来源。将结果与以前对IEP为10〜(-4)M的PAMPS / C_(14)TAB混合物的发现进行了比较。

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