Griss Patrick, Andersson Helene, Stemme Göran
Department of Signals, Sensors and Systems, Royal Institute of Technology, 100 44 Stockholm, Sweden.
Lab Chip. 2002 May;2(2):117-20. doi: 10.1039/b111040n. Epub 2002 Feb 27.
Two novel concepts for controlled handling of liquids in microfluidic systems are presented: a one-shot micropump and a normally open one-shot valve based on thermo-expanding Expancel microspheres. Expancel microspheres are small spherical plastic particles that, when heated, increase their volume considerably. We show that liquid volumes in the nanoliter range can be actuated against a counter pressure of at least 100 kPa and fluid flow can be inhibited in a microchannel against pressures of at least 100 kPa.
一种一次性微泵和一种基于热膨胀Expancel微球的常开一次性阀。Expancel微球是小型球形塑料颗粒,加热时其体积会显著增大。我们证明,纳升范围内的液体体积能够在至少100 kPa的反压下被驱动,并且在微通道中能够在至少100 kPa的压力下抑制流体流动。