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Acoustofluidic micromixer on lab-on-a-foil devices.

Authors :
Lin, Yang
Gao, Can
Gao, Yuan
Wu, Mengren
Ahmadian Yazdi, Alireza
Xu, Jie
Source :
Sensors & Actuators B: Chemical. May2019, Vol. 287, p312-319. 8p.
Publication Year :
2019

Abstract

Highlights • Lab-on-a-foil devices are fabricated using plastic films and tapes. • Microstructures are created inside microchannels using two-photon polymerization. • Through holes under DOMES can improve acoustic performance. • Rapid mixing is achieved for the first time on a lab-on-a-foil device. Abstract In this paper, off-the-shelf materials such as polyethylene terephthalate films and double-sided tapes are applied to create lab-on-a-foil microfluidic devices via a cutting plotter. Microstructures termed defended oscillating membrane equipped structures (DOMES) are integrated in the microchannels. These dome-shaped pore-containing DOMES are created above a through hole on the films using two-photon polymerization. As the bottom side of the air-liquid interfaces trapped in DOMES' pores is always facing ambient air, bubble instability that compromises acoustofluidic performance in conventional cases is alleviated or avoided. The acoustically induced flow is observed to be stronger with increasing pore size on DOMES. An acoustofluidic micromixer is proposed to further investigate the capabilities of DOMES, and it is the first time active micromixer is achieved on lab-on-a-foil devices, with good performance competitive to reported microfluidic mixers. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09254005
Volume :
287
Database :
Academic Search Index
Journal :
Sensors & Actuators B: Chemical
Publication Type :
Academic Journal
Accession number :
135351331
Full Text :
https://doi.org/10.1016/j.snb.2019.02.050