DocumentCode
2755926
Title
Surface micromachined polymer actuators as valves in PDMS microfluidic system
Author
Pettersson, P. Fredrik ; Jager, Edwin W H ; Inganäs, Olle
Author_Institution
Dept. of Phys. & Meas. Technol., Linkoping Univ., Sweden
fYear
2000
fDate
2000
Firstpage
334
Lastpage
335
Abstract
To control flows in microfluidic systems there is a need of valves. Desirable properties of such valves are in general low cost, low dead-volume, fast response and low power-consumption. For bioanalytical purposes the requirements also include biocompatibility and ability to function in biological fluids. One way to address these problems is to use surface-fabricated actuators, and then bonding the actuator chip with high aspect-ratio flow-channels in a thick polymer cover. A suitable cover structure can be made in elastomeric poly(dimethylsiloxane) (PDMS) which can be joined to a silicon surface. The active valve structures can be micromuscles, i.e. actuators based on conjugated polymer such as polypyrrole (PPy), which can be electrochemically doped. The reversible doping of PPy forces counterions to flow into or out of the polymer to balance the charge, resulting in a volume change. This volume change can be used in a bilayer actuator, where a metal can serve as constant volume layer as well as electrical contact to the polymer layer changing volume under reversible doping
Keywords
biological techniques; microactuators; microfluidics; micromachining; microvalves; polymers; PDMS microfluidic system valves; Si; bioanalytical purposes; biocompatibility; biological fluids; cover structure; elastomeric poly(dimethylsiloxane); high aspect-ratio flow-channels; silicon surface; surface micromachined polymer actuators; surface-fabricated actuators; thick polymer cover; Actuators; Bonding; Control systems; Costs; Doping; Fluid flow control; Microfluidics; Polymers; Silicon; Valves;
fLanguage
English
Publisher
ieee
Conference_Titel
Microtechnologies in Medicine and Biology, 1st Annual International, Conference On. 2000
Conference_Location
Lyon
Print_ISBN
0-7803-6603-4
Type
conf
DOI
10.1109/MMB.2000.893799
Filename
893799
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