Interfacial slip on rough, patterned and soft surfaces: A review of experiments and simulations
Advancements in the fabrication of microfluidic and nanofluidic devices and the study of liquids in confined geometries rely on understanding the boundary conditions for the flow of liquids at solid surfaces. Over the past ten years, a large number of research groups have turned to investigating flo...
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Veröffentlicht in: | Advances in colloid and interface science 2014-08, Vol.210, p.21-38 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Advancements in the fabrication of microfluidic and nanofluidic devices and the study of liquids in confined geometries rely on understanding the boundary conditions for the flow of liquids at solid surfaces. Over the past ten years, a large number of research groups have turned to investigating flow boundary conditions, and the occurrence of interfacial slip has become increasingly well-accepted and understood. While the dependence of slip on surface wettability is fairly well understood, the effect of other surface modifications that affect surface roughness, structure and compliance, on interfacial slip is still under intense investigation. In this paper we review investigations published in the past ten years on boundary conditions for flow on complex surfaces, by which we mean rough and structured surfaces, surfaces decorated with chemical patterns, grafted with polymer layers, with adsorbed nanobubbles, and superhydrophobic surfaces. The review is divided in two interconnected parts, the first dedicated to physical experiments and the second to computational experiments on interfacial slip of simple (Newtonian) liquids on these complex surfaces. Our work is intended as an entry-level review for researchers moving into the field of interfacial slip, and as an indication of outstanding problems that need to be addressed for the field to reach full maturity.
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•A review on interfacial slip on complex surfaces for researchers entering the field and for experts in need of an update.•Outstanding issues on this topic are highlighted for future research.•A comprehensive list of references from the past 13 years is included (183 references). |
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ISSN: | 0001-8686 1873-3727 |
DOI: | 10.1016/j.cis.2014.02.015 |