Title :
PDMS membrane with integrated open-porous foam featuring a gradient in pore-size for simultaneous filtration and pumping of fluids in microfluidic structures
Author :
Hilber, Wolfgang ; Clara, Stefan ; Sell, Johannes ; Jakoby, Bernhard
Author_Institution :
Inst. for Microelectron. & Microsensors, Johannes Kepler Univ., Linz, Austria
Abstract :
In this contribution we present a concept for simultaneous filtration and pumping solely realized with a single polymer based membrane. An open-porous foam with a gradient in pore size, which essentially resembles a nozzle-diffuser structure, is integrated into the center of a flexible PDMS (Polydimethylsiloxane) membrane, which is placed into a small fluid cavity with symmetric inlet and outlet geometry. The actuation of the membrane is achieved with an electromagnetic coil from the outside and a small magnetic ring, which has also been integrated into the membrane. The sinusoidal excitation of the membrane leads to a vibrational movement of the membrane in the fluid cavity, and due to the asymmetry in pore size of the integrated foam a unidirectional fluid flow evolves in the system. Thus, the proposed device can be used for simultaneous pumping and filtration with the additional advantage of reduced sensitivity to fouling.
Keywords :
coils; flow; foams; microfiltration; microfluidics; polymer foams; porous materials; electromagnetic coil; flexible PDMS membrane; fluid cavity; fluid pumping; gradient; integrated open-porous foam; magnetic ring; microfluidic structure; nozzle- diffuser structure; polydimethylsiloxane; polymer membrane; pore-size; simultaneous filtration; sinusoidal excitation; unidirectional fluid flow; vibrational movement; Biomembranes; Coils; Filtration; Fluids; Magnetic separation; Microfluidics; Pumps;
Conference_Titel :
SENSORS, 2014 IEEE
Conference_Location :
Valencia
DOI :
10.1109/ICSENS.2014.6984960