A Fluidic Interface with High Flow Uniformity for Reusable Large Area Resonant Biosensors

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TitreA Fluidic Interface with High Flow Uniformity for Reusable Large Area Resonant Biosensors
Type de publicationJournal Article
Year of Publication2017
AuteursAzzopardi C-L, Lacour V, Manceau J-F, Barthes M, Bonnet D, Chollet F, Leblois T
JournalMICROMACHINES
Volume8
Pagination308
Date PublishedOCT
Type of ArticleArticle
ISSN2072-666X
Mots-clésBiosensor, fluidic interface, micro-machining, microengineering, planar flow
Résumé

Resonant biosensors are known for their high accuracy and high level of miniaturization. However, their fabrication costs prevent them from being used as disposable sensors and their effective commercial success will depend on their ability to be reused repeatedly. Accordingly, all the parts of the sensor in contact with the fluid need to tolerate the regenerative process which uses different chemicals (H3PO4, H2SO4 based baths) without degrading the characteristics of the sensor. In this paper, we propose a fluidic interface that can meet these requirements, and control the liquid flow uniformity at the surface of the vibrating area. We study different inlet and outlet channel configurations, estimating their performance using numerical simulations based on finite element method (FEM). The interfaces were fabricated using wet chemical etching on Si, which has all the desirable characteristics for a reusable biosensor circuit. Using a glass cover, we could observe the circulation of liquid near the active surface, and by using micro-particle image velocimetry (PIV) on large surface area we could verify experimentally the effectiveness of the different designs and compare with simulation results.

DOI10.3390/mi8100308