Enel A, Bourrelier A, Vial J, Thiébaut D, Bourlon B
Univ. Grenoble Alpes, CEA, LETI, MINATEC Campus, F-38000 Grenoble, France.
Lab Chip. 2020 Apr 7;20(7):1290-1297. doi: 10.1039/c9lc01163c. Epub 2020 Mar 11.
Digital microfluidics is known for fine manipulation of sub-millimeter samples, with applications from biological sample preparation to diagnostic testing. Unfortunately, until now, it has been only limited to liquid phases. In this paper, we present a new system based on a digital microfluidic platform (DMFP), which is able to digitally manipulate gaseous samples, such as alkanes from n-hexane to n-nonane. The DMFP relies mostly on interconnected micropreconcentrators (μPCs) to trap and release the samples depending on their controlled temperature. We show that the DMFP is capable of performing all basic operations of digital microfluidics: trapping/releasing and moving samples, adding samples and separating samples. As a first example of a more complex programmable use of our DMFP, we measured the breakthrough volume of alkanes on a Tenax TA adsorbent. The results were consistent with tabulated values obtained with standard laboratory instruments. This DMFP promises great possibilities for more complex programmable gas microfluidics digital devices and the development of new digital gas sample preparation and analysis methods.
数字微流控以对亚毫米级样本的精细操控而闻名,其应用涵盖从生物样本制备到诊断测试等领域。不幸的是,到目前为止,它仅局限于液相。在本文中,我们展示了一种基于数字微流控平台(DMFP)的新系统,该系统能够对气态样本进行数字操控,例如从正己烷到正壬烷的烷烃。DMFP主要依靠相互连接的微型预浓缩器(μPCs),根据控制的温度来捕获和释放样本。我们证明了DMFP能够执行数字微流控的所有基本操作:捕获/释放和移动样本、添加样本以及分离样本。作为我们的DMFP更复杂可编程用途的首个示例,我们测量了在Tenax TA吸附剂上烷烃的穿透体积。结果与使用标准实验室仪器获得的表格值一致。这种DMFP为更复杂的可编程气体微流控数字设备以及新的数字气体样本制备和分析方法的开发带来了巨大可能性。