2012Lab on a ChipRequires access

“Fluidic batteries” as low-cost sources of power in paper-based microfluidic devices

Nicole K. Thom, Kimy Yeung, Marley B. Pillion, Scott T. Phillips

Open publisher page 162 citations

Abstract

This communication describes the first paper-based microfluidic device that is capable of generating its own power when a sample is added to the device. The microfluidic device contains galvanic cells (that we term "fluidic batteries") integrated directly into the microfluidic channels, which provides a direct link between a power source and an analytical function within the device. This capability is demonstrated using an example device that simultaneously powers a surface-mount UV LED and conducts an on-chip fluorescence assay.

About this research paper

What this paper is about

This communication describes the first paper-based microfluidic device that is capable of generating its own power when a sample is added to the device. The microfluidic device contains galvanic cells (that we term "fluidic batteries") integrated directly into the microfluidic channels, which provides a direct link between a power source and an analytical function within the device. This capability is demonstrated using an example device that simultaneously powers a surface-mount UV LED and conducts an on-chip fluorescence assay.

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OpenAlex reports 162 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This communication describes the first paper-based microfluidic device that is capable of generating its own power when a sample is added to the device. The microfluidic device contains galvanic cells (that we term "fluidic batteries") integrated directly into the microfluidic channels, which provides a direct link between a power source and an analytical function within the device. This capability is demonstrated using an example device that simultaneously powers a surface-mount UV LED and conducts an on-chip fluorescence assay.

Key concepts: Microfluidics, Fluidics, Power (physics), Nanotechnology, Chip, Plug and play, Materials science, Optoelectronics

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