The interplay between topography and contact line pinning mechanisms on flat and superhydrophobic surfaces

Fuente: arXiv
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Main Authors: Meyari, Mahya, Dunare, Camelia, Sefiane, Khellil, Titmuss, Simon, Thijssen, Job H. J.
Format: Preprint
Published: 2024
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author Meyari, Mahya
Dunare, Camelia
Sefiane, Khellil
Titmuss, Simon
Thijssen, Job H. J.
author_facet Meyari, Mahya
Dunare, Camelia
Sefiane, Khellil
Titmuss, Simon
Thijssen, Job H. J.
contents Wettability of a surface depends on both surface chemistry and topography. To move a three-phase contact line, a de-pinning force needs to be applied, which is of practical importance in various applications. However, a unified understanding and description of the de-pinning force on both flat and superhydrophobic surfaces is still lacking. This study aims to bridge the existing gap in our understanding of the three-phase contact line pinning on flat and microstructured superhydrophobic surfaces. The findings indicate that a general model, based on two different pinning mechanisms, can describe the pinning force on both flat and microstructured surfaces. We compare the general model against experimental data from literature, as well as our experiments on flat and microstructured surfaces coated with a liquid-like layer of grafted polymer chains. While this theoretical framework can be useful for designing micro-engineered surfaces on which the contact line behaviour is important, it also provides a potential experimental strategy to distinguish the contribution of defects from that of molecular re-orientation to contact line pinning on a given solid material.
format Preprint
id arxiv_https___arxiv_org_abs_2410_04914
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The interplay between topography and contact line pinning mechanisms on flat and superhydrophobic surfaces
Meyari, Mahya
Dunare, Camelia
Sefiane, Khellil
Titmuss, Simon
Thijssen, Job H. J.
Fluid Dynamics
Soft Condensed Matter
Wettability of a surface depends on both surface chemistry and topography. To move a three-phase contact line, a de-pinning force needs to be applied, which is of practical importance in various applications. However, a unified understanding and description of the de-pinning force on both flat and superhydrophobic surfaces is still lacking. This study aims to bridge the existing gap in our understanding of the three-phase contact line pinning on flat and microstructured superhydrophobic surfaces. The findings indicate that a general model, based on two different pinning mechanisms, can describe the pinning force on both flat and microstructured surfaces. We compare the general model against experimental data from literature, as well as our experiments on flat and microstructured surfaces coated with a liquid-like layer of grafted polymer chains. While this theoretical framework can be useful for designing micro-engineered surfaces on which the contact line behaviour is important, it also provides a potential experimental strategy to distinguish the contribution of defects from that of molecular re-orientation to contact line pinning on a given solid material.
title The interplay between topography and contact line pinning mechanisms on flat and superhydrophobic surfaces
topic Fluid Dynamics
Soft Condensed Matter
url https://arxiv.org/abs/2410.04914