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

R Truckenmüller, S Giselbrecht
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引用次数: 25

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.

基于芯片的生命科学应用的柔性,非埋空微结构的微热成型。
提出了一种利用聚合物薄膜制造柔性、非埋置、薄壁中空微结构的新方法。这种低成本的方法似乎特别适合于制造生命科学领域中用于流体单向应用的塑料微结构。它基于适应微观结构技术的热成型工艺,被称为“微热成型”。在热压压力机内部,使用压缩气体将加热的薄热塑性薄膜形成到板形金属模具的真空微腔中。所述薄膜可以在同一压力机内热封到较厚的塑料薄膜基材上,而不脱模所述热成型薄膜。为了证明这种新制造方法的性能,用聚苯乙烯、聚碳酸酯和环烯烃聚合物分别制备了16个和625个平行微结构的柔性毛细管电泳和细胞培养芯片。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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