Solid-State AC Electric Field Driven Micropumps
Solid-State AC Electric Field Driven Micropumps
Electrolytes can be driven by electric fields generated by arrays of microelectrodes. One mechanism that produces strong fluid flow in loc conductivity media is AC electroosmosis. Asymmetric AC electroosmotic arrays were fabricated on glass substrates and electrolyte flow measured as a function of applied voltage.
AC electroosmosis, micropump
90-5682-535-6
187-190
Green, Nicolas G
d9b47269-c426-41fd-a41d-5f4579faa581
Ramos, Antonio
511ab594-f312-45ce-b7ff-ef348fd9b559
Morgan, Hywel
de00d59f-a5a2-48c4-a99a-1d5dd7854174
2004
Green, Nicolas G
d9b47269-c426-41fd-a41d-5f4579faa581
Ramos, Antonio
511ab594-f312-45ce-b7ff-ef348fd9b559
Morgan, Hywel
de00d59f-a5a2-48c4-a99a-1d5dd7854174
Green, Nicolas G, Ramos, Antonio and Morgan, Hywel
(2004)
Solid-State AC Electric Field Driven Micropumps.
15th MicroMechanics Europe Workshop, , Leuven, Belgium.
04 - 06 Sep 2004.
.
Record type:
Conference or Workshop Item
(Paper)
Abstract
Electrolytes can be driven by electric fields generated by arrays of microelectrodes. One mechanism that produces strong fluid flow in loc conductivity media is AC electroosmosis. Asymmetric AC electroosmotic arrays were fabricated on glass substrates and electrolyte flow measured as a function of applied voltage.
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More information
Published date: 2004
Additional Information:
Event Dates: 5-7th September 2004
Venue - Dates:
15th MicroMechanics Europe Workshop, , Leuven, Belgium, 2004-09-04 - 2004-09-06
Keywords:
AC electroosmosis, micropump
Organisations:
Nanoelectronics and Nanotechnology
Identifiers
Local EPrints ID: 260008
URI: http://eprints.soton.ac.uk/id/eprint/260008
ISBN: 90-5682-535-6
PURE UUID: a1e62225-a973-4f50-a8af-e4d810386314
Catalogue record
Date deposited: 01 Dec 2004
Last modified: 11 Dec 2021 03:59
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Contributors
Author:
Nicolas G Green
Author:
Antonio Ramos
Author:
Hywel Morgan
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