HSG-IMIT - Institut für Mikro- und Informationstechnik, Wilhelm-Schickard-Strasse 10, D-78052 Villingen-Schwenningen, Germany.
Lab Chip. 2009 Dec 21;9(24):3599-603. doi: 10.1039/b914415c. Epub 2009 Oct 12.
We designed and experimentally validated a new type of passive valve for centrifugal microfluidic platforms. A liquid column entering an unvented receiving chamber is stopped by the counter-pressure of compressed air. This valve opens under defined conditions at high centrifugal frequencies at which the interface between liquid and air becomes unstable and enables a phase exchange, forwarding the liquid. Burst frequencies of the valve were determined for liquids typically used in biochemical assays: pure water, water with detergent concentrations between 0.01 and 10%, and pure ethanol. Burst frequencies between 8.5 +/- 0.6 and 27.9 +/- 2.0 Hz were measured for different surface tensions. The burst frequencies can be tuned by simple geometrical changes in the valving structure. The valve does not require ultra-precise structures or local surface modifications and is therefore ideal for low-cost microfluidic polymer disks. Potential applications are in the field of multiparameter and panel analysis, such as PCR-genotyping.
我们设计并实验验证了一种新型的用于离心微流控平台的被动阀。进入无通风接收室的液柱被压缩空气的反压阻止。在高离心频率下,当液体和空气之间的界面变得不稳定并允许相交换、推进液体时,该阀在特定条件下打开。我们确定了用于生化分析中常用液体的阀的突发频率:纯水、表面活性剂浓度在 0.01 到 10%之间的水和纯乙醇。不同表面张力下测量到的突发频率在 8.5 +/- 0.6 和 27.9 +/- 2.0 Hz 之间。通过改变阀结构的简单几何形状可以调整突发频率。该阀不需要超精密结构或局部表面改性,因此非常适合低成本的微流控聚合物盘。潜在的应用领域是多参数和面板分析,如 PCR 基因分型。