Physics of Complex Fluids Group and MESA+ Institute, University of Twente, PO Box 217, 7500 AE Enschede, the Netherlands.
Physics of Complex Fluids Group and MESA+ Institute, University of Twente, PO Box 217, 7500 AE Enschede, the Netherlands.
J Colloid Interface Sci. 2021 Feb 15;584:551-560. doi: 10.1016/j.jcis.2020.10.016. Epub 2020 Oct 13.
The wettability of complex fluids on surfaces usually depends on the adsorption of solutes to any of the constituting interfaces. Controlling such interfacial processes by varying the composition of a phase enables the design of smart responsive systems. Our goal is to demonstrate that 3D Confocal Raman Microscopy (CRM) can reveal the mechanistic details of such processes by allowing to simultaneously monitor the contact angle variation and redistribution of the chemical species involved.
Motivated by the enhanced oil recovery process of low salinity water flooding, we studied the response of picolitre oil drops on mineral substrates upon varying the ambient brine salinity. The substrates were pre-coated with thin layers of deuterated-stearic acid (surfactant) that display salinity-dependent stability.
3D CRM imaging using a recently proposed faster 'ai' (algorithm-improved) mode reveals that the surfactant layer is stable at high salinities, leading to preferential oil wetting. Upon reducing the ambient brine salinity, this layer decomposes and the investigated surfaces of mica and - somewhat less pronounced - silica become more water wet. Eventually, the surfactant is found to partly dissolve in the oil and partly precipitate at the oil-water interface. We anticipate that ai-3D-CRM will prove useful to holistically study similar systems displaying reactive wetting.
复杂流体在表面上的润湿性通常取决于溶质在任何组成界面上的吸附。通过改变相的组成来控制这种界面过程,可以设计出智能响应系统。我们的目标是证明 3D 共焦拉曼显微镜(CRM)可以通过允许同时监测涉及的化学物质的接触角变化和重新分布来揭示这些过程的机械细节。
受低盐度水驱提高石油采收率过程的启发,我们研究了在改变环境盐水盐度时,矿物基底上微升油滴的响应。基底预先涂有薄的氘化硬脂酸(表面活性剂)层,其稳定性取决于盐度。
使用最近提出的更快的“ai”(算法改进)模式进行 3D CRM 成像表明,表面活性剂层在高盐度下稳定,导致优先油润湿。当降低环境盐水盐度时,该层分解,云母和 - 稍微不那么明显 - 二氧化硅的被研究表面变得更亲水。最终,发现表面活性剂部分溶解在油中,部分沉淀在油水界面处。我们预计 ai-3D-CRM 将有助于全面研究显示反应性润湿的类似系统。