Drop dynamics on chemically patterned surfaces

We compare numerical and experimental results exploring the behaviour of liquid drops moving across a surface patterned with hydrophobic and hydrophilic stripes. A lattice Boltzmann algorithm is used to solve the hydrodynamic equations of motion of the drops allowing us to investigate their behaviou...

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Main Authors: Kusumaatmaja, H, Leopoldes, J, Dupuis, A, Yeomans, J
Format: Journal article
Language:English
Published: 2006
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author Kusumaatmaja, H
Leopoldes, J
Dupuis, A
Yeomans, J
author_facet Kusumaatmaja, H
Leopoldes, J
Dupuis, A
Yeomans, J
author_sort Kusumaatmaja, H
collection OXFORD
description We compare numerical and experimental results exploring the behaviour of liquid drops moving across a surface patterned with hydrophobic and hydrophilic stripes. A lattice Boltzmann algorithm is used to solve the hydrodynamic equations of motion of the drops allowing us to investigate their behaviour as the stripe widths and the wettability contrast are altered. We explain how the motion of the drop is determined by the interplay between the driving force and the variation in surface force as the drop moves between regions of different contact angle and we find that the shape of the drops can undergo large periodic deviations from spherical. When compared, the numerical results agree well with experiments on micron-scale drops moving across substrates patterned by microcontact printing. © EDP Sciences.
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spelling oxford-uuid:8f8bba31-722c-43d7-99a5-190252f2a7f12022-03-26T23:05:07ZDrop dynamics on chemically patterned surfacesJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:8f8bba31-722c-43d7-99a5-190252f2a7f1EnglishSymplectic Elements at Oxford2006Kusumaatmaja, HLeopoldes, JDupuis, AYeomans, JWe compare numerical and experimental results exploring the behaviour of liquid drops moving across a surface patterned with hydrophobic and hydrophilic stripes. A lattice Boltzmann algorithm is used to solve the hydrodynamic equations of motion of the drops allowing us to investigate their behaviour as the stripe widths and the wettability contrast are altered. We explain how the motion of the drop is determined by the interplay between the driving force and the variation in surface force as the drop moves between regions of different contact angle and we find that the shape of the drops can undergo large periodic deviations from spherical. When compared, the numerical results agree well with experiments on micron-scale drops moving across substrates patterned by microcontact printing. © EDP Sciences.
spellingShingle Kusumaatmaja, H
Leopoldes, J
Dupuis, A
Yeomans, J
Drop dynamics on chemically patterned surfaces
title Drop dynamics on chemically patterned surfaces
title_full Drop dynamics on chemically patterned surfaces
title_fullStr Drop dynamics on chemically patterned surfaces
title_full_unstemmed Drop dynamics on chemically patterned surfaces
title_short Drop dynamics on chemically patterned surfaces
title_sort drop dynamics on chemically patterned surfaces
work_keys_str_mv AT kusumaatmajah dropdynamicsonchemicallypatternedsurfaces
AT leopoldesj dropdynamicsonchemicallypatternedsurfaces
AT dupuisa dropdynamicsonchemicallypatternedsurfaces
AT yeomansj dropdynamicsonchemicallypatternedsurfaces