• DocumentCode
    1151693
  • Title

    Microthermoforming of flexible, not-buried hollow microstructures for chip-based life sciences applications

  • Author

    Truckenmüller, R. ; Giselbrecht, S.

  • Author_Institution
    Inst. fur Mikrostrukturtechnik, Forschungszentrum Karlsruhe, Germany
  • Volume
    151
  • Issue
    4
  • fYear
    2004
  • Firstpage
    163
  • Lastpage
    166
  • Abstract
    A new method is presented for the manufacturing of flexible, not buried and thin-walled hollow microstructures from polymer films. This low-cost method seems to be especially suited for the fabrication of plastic microstructures for fluidic one-way applications in the field of life sciences. It is based on a thermoforming process adapted to microstructure technology and is called ´microthermoforming´. Inside a hot embossing press, a heated thin thermoplastic film is formed into the evacuated microcavities of a plate-shaped metal mould using a compressed gas. The film may be heat-sealed on to a thicker plastic film substrate inside the same press without demoulding the thermoformed film. To demonstrate the performance of the new manufacturing method, flexible capillary electrophoresis and cell culture chips from polystyrene, polycarbonate and a cyclo-olefin polymer with 16 and 625 parallel microstructures each, respectively, have been fabricated.
  • Keywords
    biotechnology; capillarity; cellular biophysics; electrophoresis; hot pressing; microcavities; microfluidics; moulding; polymer films; thermoforming; cell culture chips; chip-based life sciences applications; cyclo-olefin polymer; evacuated microcavities; flexible capillary electrophoresis; flexible unburied thin-walled hollow microstructures; fluidic one-way applications; hot embossing press; microthermoforming; plastic microstructures; polycarbonate; polymer films; polystyrene; thin thermoplastic film;
  • fLanguage
    English
  • Journal_Title
    Nanobiotechnology, IEE Proceedings -
  • Publisher
    iet
  • ISSN
    1478-1581
  • Type

    jour

  • DOI
    10.1049/ip-nbt:20040823
  • Filename
    1352838