Department of Chemical and Materials Engineering, University of Alberta, Edmonton, Alberta T6G 1H9, Canada.
Langmuir. 2021 May 11;37(18):5682-5690. doi: 10.1021/acs.langmuir.1c00586. Epub 2021 Apr 29.
Surfactants based on fatty acids have attracted extensive attention thanks to their eco-friendly and pH-responsive features. Here, we studied two fatty acid-based surfactants that were paired with the same organic counterion but distinguished by their aliphatic chain lengths (monoethanolamine-oleic acid (MEA-OA) and monoethanolamine-lauric acid (MEA-LA)). Both surfactants exhibited the ability to lower the oil-water interfacial tension but lost their interfacial activity in a low-pH environment. We experimentally investigated their influence on the receding and spreading of oil droplets on solid surfaces. It was found that the interfacial tension reduction could decrease the static contact angle of the aqueous phase and hindered displacement dynamics during the oil droplet receding. Meanwhile, the interfacial activity was more likely to suppress the initiation of the oil droplet spreading due to the more stable thin-film forming prior to the spreading process. Nevertheless, the experimental results also exhibited that MEA-OA was more effective than MEA-LA in suppressing the receding dynamics and the spreading initiation even when they were characterized by similar interfacial tension values. Such an interesting observation could be attributed to the more considerable Marangoni flow in the solution of MEA-OA whose molecules have longer aliphatic chains. The insight from this study is expected to improve the knowledge on the molecular design for more efficient applications of fatty acid-based surfactants.
基于脂肪酸的表面活性剂因其环保和 pH 响应特性而引起了广泛关注。在这里,我们研究了两种基于脂肪酸的表面活性剂,它们与相同的有机反离子配对,但区别在于它们的脂肪链长度(单乙醇胺-油酸(MEA-OA)和单乙醇胺-月桂酸(MEA-LA))。这两种表面活性剂都表现出降低油水界面张力的能力,但在低 pH 环境中失去界面活性。我们实验研究了它们对固体表面上油滴后退和扩展的影响。结果发现,界面张力的降低可以降低水相的静态接触角,并阻碍油滴后退过程中的置换动力学。同时,由于在扩展过程之前形成更稳定的薄膜,界面活性更有可能抑制油滴扩展的开始。然而,实验结果还表明,MEA-OA 比 MEA-LA 更有效地抑制后退动力学和扩展起始,即使它们具有相似的界面张力值。这种有趣的观察结果可以归因于 MEA-OA 溶液中更显著的马兰戈尼流,其分子具有更长的脂肪链。这项研究的启示有望提高对脂肪酸基表面活性剂更有效应用的分子设计的认识。