Zdziennicka Anna, Rekiel Edyta, Szymczyk Katarzyna, Zdziennicki Wojciech, Jańczuk Bronisław
Department of Interfacial Phenomena, Institute of Chemical Sciences, Faculty of Chemistry, Maria Curie-Skłodowska University in Lublin, Maria Curie-Skłodowska Sq. 3, 20-031 Lublin, Poland.
University Clinical Hospital in Poznań, Przybyszewskiego 49, 60-355 Poznań, Poland.
Molecules. 2023 Aug 3;28(15):5858. doi: 10.3390/molecules28155858.
Despite the fact that the wetting properties of multicomponent mixtures including the surface active compounds play a very important role in many practical applications, they are not sufficiently known. Thus, the wettability of polytetrafluoroethylene (PTFE) and poly (methyl methacrylate) (PMMA) by the water + ethanol (ET) solution of rhamnolipid (RL) with Triton X-165 (TX165) mixture was studied. The investigations involved measuring the advancing contact angles of this solution on PTFE and PMMA by varying the concentration of TX165 while maintaining a constant concentration of ET and RL. Additionally, a thermodynamic analysis was conducted to obtain the compositions and concentrations of the ET, RL, and TX165 mixtures at the different interfaces. The composition and concentration of the interface mixed layer were considered using two different approaches to the wetting process. From these considerations, it follows that, depending on the ET concentration, it is possible to form the TX165 + RL layer at the solid-water + ET mixed solvent, as well as the water + ET-air interfaces, but not at the solid-water and water-air ones. This conclusion is in accordance with the Gibbs standard free energy of adsorption of particular components of the studied mixture at the solution-air and solid-solution interfaces.
尽管包含表面活性化合物的多组分混合物的润湿性在许多实际应用中起着非常重要的作用,但人们对其了解并不充分。因此,研究了鼠李糖脂(RL)与吐温X - 165(TX165)的水 + 乙醇(ET)溶液对聚四氟乙烯(PTFE)和聚甲基丙烯酸甲酯(PMMA)的润湿性。研究包括在保持ET和RL浓度恒定的同时,通过改变TX165的浓度来测量该溶液在PTFE和PMMA上的前进接触角。此外,进行了热力学分析,以获得不同界面处ET、RL和TX165混合物的组成和浓度。使用两种不同的润湿过程方法来考虑界面混合层的组成和浓度。从这些考虑因素可以得出,根据ET浓度的不同,有可能在固体 - 水 + ET混合溶剂以及水 + ET - 空气界面处形成TX165 + RL层,但在固体 - 水和水 - 空气界面处则不会。这一结论与所研究混合物的特定组分在溶液 - 空气和固体 - 溶液界面处的吉布斯标准吸附自由能一致。