Microfluidic device fabrication with serigraphy technique

This article provides the design and fabrication details of a new technique to build a microfluidic device with two parallel substrates and a silicone gasket. The fabrication process uses screen printing technology offering fast and low-cost microdevices without the need for high-cost fabrication eq...

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Veröffentlicht in:Proceedings of the Institution of Mechanical Engineers. Part B, Journal of engineering manufacture Journal of engineering manufacture, 2016-07, Vol.230 (7), p.1309-1316
Hauptverfasser: Nerguizian, Vahé, Alazzam, Anas, Gauthier, Jules, Roman, Dacian, Stiharu, Ion, Burnier, Miguel
Format: Artikel
Sprache:eng
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Zusammenfassung:This article provides the design and fabrication details of a new technique to build a microfluidic device with two parallel substrates and a silicone gasket. The fabrication process uses screen printing technology offering fast and low-cost microdevices without the need for high-cost fabrication equipment and special photoresist processes. Hermetic microfluidic channels of 300 µm width and 50 µm height having parallel facing electrodes on two substrates are made with simple serigraphy technique using silicone rubber. The fabricated devices were experimentally tested for detection and characterization of polystyrene particles and living cells by negative and positive dielectrophoresis. The reported technique enables simple manipulation, centering, detection and characterization of living cells at low and high frequencies.
ISSN:0954-4054
2041-2975
DOI:10.1177/0954405415615801