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April 7, 2000Science4,017 citations

Monolithic Microfabricated Valves and Pumps by Multilayer Soft Lithography

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MUMarc UngerHCHou-Pu ChouTTTodd Thorsen

Key Points

  • This research aims to enhance microfluidic device fabrication using multilayer soft lithography techniques.
  • Extended soft lithography techniques to create multilayered devices.
  • Fabricated active microfluidic systems including on-off valves and pumps.
  • Analyzed the reduction in device area compared to silicon-based options.
  • Achieved device area reduction by over 100 times compared to traditional silicon devices.
  • Retained benefits of soft lithography such as rapid prototyping and biocompatibility.

Abstract

Soft lithography is an alternative to silicon-based micromachining that uses replica molding of nontraditional elastomeric materials to fabricate stamps and microfluidic channels. We describe here an extension to the soft lithography paradigm, multilayer soft lithography, with which devices consisting of multiple layers may be fabricated from soft materials. We used this technique to build active microfluidic systems containing on-off valves, switching valves, and pumps entirely out of elastomer. The softness of these materials allows the device areas to be reduced by more than two orders of magnitude compared with silicon-based devices. The other advantages of soft lithography, such as rapid prototyping, ease of fabrication, and biocompatibility, are retained.

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Cite This Study

Unger et al. (2000) studied this question.

synapsesocial.com/papers/69dec9bd4838c5c0bab0d092https://doi.org/10.1126/science.288.5463.113
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