Center for Nonlinear Phenomena and Complex Systems, Université Libre de Bruxelles, Code Postal 231, Campus Plaine, B-1050 Brussels, Belgium.
Chemical Physics Theory Group, Department of Chemistry, University of Toronto, Toronto, Ontario M5S 3H6, Canada.
J Chem Phys. 2018 May 21;148(19):194114. doi: 10.1063/1.5031761.
Nonequilibrium interfacial thermodynamics is formulated in the presence of surface reactions for the study of diffusiophoresis in isothermal systems. As a consequence of microreversibility and Onsager-Casimir reciprocal relations, diffusiophoresis, i.e., the coupling of the tangential components of the pressure tensor to the concentration gradients of solute species, has a reciprocal effect where the interfacial currents of solutes are coupled to the slip velocity. The presence of surface reactions is shown to modify the diffusiophoretic and reciprocal effects at the fluid-solid interface. The thin-layer approximation is used to describe the solution flowing near a reactive solid interface. Analytic formulas describing the diffusiophoretic and reciprocal effects are deduced in the thin-layer approximation and tested numerically for the Poiseuille flow of a solution between catalytic planar surfaces.
非平衡界面热力学在表面反应存在的情况下被构建,以研究等温系统中的扩散迁移现象。由于微观可逆性和 Onsager-Casimir 互易关系,扩散迁移,即压力张量的切向分量与溶质浓度梯度的耦合,具有互易效应,其中溶质的界面电流与滑移速度耦合。表面反应的存在被证明会改变流体-固界面处的扩散迁移和互易效应。薄液层近似用于描述在反应性固体界面附近流动的溶液。在薄液层近似下推导出描述扩散迁移和互易效应的解析公式,并针对催化平面表面之间溶液的泊肃叶流进行数值测试。