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Using Adhesive Patterning to Construct 3D Paper Microfluidic Devices.

Authors :
Kalish, Brent
Kalish, Brent
Tsutsui, Hideaki
Kalish, Brent
Kalish, Brent
Tsutsui, Hideaki
Source :
Journal of visualized experiments : JoVE; vol 2016, iss 110, e53805; 1940-087X
Publication Year :
2016

Abstract

We demonstrate the use of patterned aerosol adhesives to construct both planar and nonplanar 3D paper microfluidic devices. By spraying an aerosol adhesive through a metal stencil, the overall amount of adhesive used in assembling paper microfluidic devices can be significantly reduced. We show on a simple 4-layer planar paper microfluidic device that the optimal adhesive application technique and device construction style depends heavily on desired performance characteristics. By moderately increasing the overall area of a device, it is possible to dramatically decrease the wicking time and increase device success rates while also reducing the amount of adhesive required to keep the device together. Such adhesive application also causes the adhesive to form semi-permanent bonds instead of permanent bonds between paper layers, enabling single-use devices to be non-destructively disassembled after use. Nonplanar 3D origami devices also benefit from the semi-permanent bonds during folding, as it reduces the likelihood that unrelated faces may accidently stick together. Like planar devices, nonplanar structures see reduced wicking times with patterned adhesive application vs uniformly applied adhesive.

Details

Database :
OAIster
Journal :
Journal of visualized experiments : JoVE; vol 2016, iss 110, e53805; 1940-087X
Notes :
application/pdf, Journal of visualized experiments : JoVE vol 2016, iss 110, e53805 1940-087X
Publication Type :
Electronic Resource
Accession number :
edsoai.on1378688713
Document Type :
Electronic Resource