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FLASH: A rapid method for prototyping paper-based microfluidic devices

Lab on a Chip · 2008 · Vol. 8(12) · pp. 2146–2146
Andres W. MartinezScott T. PhillipsBenjamin J. WileyMalancha GuptaGeorge M. Whitesides

Abstract

This article describes FLASH (Fast Lithographic Activation of Sheets), a rapid method for laboratory prototyping of microfluidic devices in paper. Paper-based microfluidic devices are emerging as a new technology for applications in diagnostics for the developing world, where low cost and simplicity are essential. FLASH is based on photolithography, but requires only a UV lamp and a hotplate; no clean-room or special facilities are required (FLASH patterning can even be performed in sunlight if a UV lamp and hotplate are unavailable). The method provides channels in paper with dimensions as small as 200 microm in width and 70 microm in height; the height is defined by the thickness of the paper. Photomasks for patterning paper-based microfluidic devices can be printed using an ink-jet printer or photocopier, or drawn by hand using a waterproof black pen. FLASH provides a straightforward method for prototyping paper-based microfluidic devices in regions where the technological support for conventional photolithography is not available.

Biosensors and Analytical DetectionElectrowetting and Microfluidic TechnologiesAdvanced biosensing and bioanalysis techniquesFlash (photography)PhotolithographyMicrofluidicsPhotomaskRapid prototypingLithographyCleanroomNanotechnologyMaterials scienceComputer science

MeSH terms

PaperSurface PropertiesTime FactorsMicrofluidics

Funding

  • National Institutes of Health
Citations
686
FWCI
24.11
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