Balzer Christopher, Zhang Pengfei, Wang Zhen-Gang
Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, California 91125, USA.
State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, Center for Advanced Low-Dimension Materials, College of Material Science and Engineering, Donghua University, Shanghai 201620, China.
Soft Matter. 2022 Aug 31;18(34):6326-6339. doi: 10.1039/d2sm00859a.
The wetting behavior of complex coacervates underpins their use in many emerging applications of surface science, particularly wet adhesives and coatings. Many factors dictate if a coacervate phase will condense on a solid surface, including solution conditions, the nature of the polymer-substrate interaction, and the underlying supernatant-coacervate bulk phase behavior. In this work, we use a simple inhomogeneous mean-field theory to study the wetting behavior of complex coacervates on solid surfaces both off-coexistence (wetting transitions) and on-coexistence (contact angles). We focus on the effects of salt concentration, the polycation/polyanion surface affinity, and the applied electrostatic potential on the wettability. We find that the coacervate generally wets the surface a first order wetting transition with second order transitions possible above a surface critical point. Applying an electrostatic potential to a solid surface always improves the surface wettability when the polycation/polyanion-substrate interaction is symmetric. For asymmetric surface affinity, the wettability has a nonmonotonic dependence with the applied potential. We use simple scaling and thermodynamic arguments to explain our results.
复合凝聚层的润湿性支撑着它们在表面科学的许多新兴应用中的使用,特别是在湿粘合剂和涂料方面。许多因素决定了凝聚层相是否会在固体表面凝聚,包括溶液条件、聚合物 - 底物相互作用的性质以及底层上清液 - 凝聚层体相行为。在这项工作中,我们使用一种简单的非均匀平均场理论来研究复合凝聚层在固体表面上的润湿性,包括非共存状态(润湿转变)和共存状态(接触角)。我们重点研究盐浓度、聚阳离子/聚阴离子表面亲和力以及外加静电势对润湿性的影响。我们发现凝聚层通常会润湿表面,存在一阶润湿转变,在表面临界点以上可能存在二阶转变。当聚阳离子/聚阴离子 - 底物相互作用对称时,对固体表面施加静电势总是会提高表面润湿性。对于不对称的表面亲和力,润湿性对外加电势具有非单调依赖性。我们使用简单的标度和热力学论据来解释我们的结果。