4.7 Article

Reaction injection molding of hydrophilic-in-hydrophobic femtolitre-well arrays

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MICROSYSTEMS & NANOENGINEERING
卷 5, 期 -, 页码 -

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SPRINGERNATURE
DOI: 10.1038/s41378-019-0065-2

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  1. European Union through the IMI project RAPPID
  2. EFPIA through the IMI project RAPPID
  3. European Union through the FP7 project NOROSENSOR
  4. Research Foundation-Flanders [FWO SB/1S30116N]

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Patterning of micro- and nanoscale topologies and surface properties of polymer devices is of particular importance for a broad range of life science applications, including cell-adhesion assays and highly sensitive bioassays. The manufacturing of such devices necessitates cumbersome multiple-step fabrication procedures and results in surface properties which degrade over time. This critically hinders their wide-spread dissemination. Here, we simultaneously mold and surface energy pattern microstructures in off-stoichiometric thiol-ene by area-selective monomer self-assembly in a rapid micro-reaction injection molding cycle. We replicated arrays of 1,843,650 hydrophilic-inhydrophobic femtolitre-wells with long-term stable surface properties and magnetically trapped beads with 75% and 87.2% efficiency in single- and multiple-seeding events, respectively. These results form the basis for ultrasensitive digital biosensors, specifically, and for the fabrication of medical devices and life science research tools, generally.

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