Cygan Zuzanna T, Cabral João T, Beers Kathryn L, Amis Eric J
Polymers Division, National Institute of Standards and Technology, Gaithersburg, Maryland 20899, USA.
Langmuir. 2005 Apr 12;21(8):3629-34. doi: 10.1021/la0471137.
Rapid prototyping photolithography of a thiolene-based resin was used to fabricate microfluidic devices stable to aliphatic and aromatic organic solvents. The swelling of the cross-linked polymer matrix in various organic solvents was quantified, and the solvent resistance properties of these microfluidic devices are described. Discrete droplets of hexanes and toluene of uniform size were generated in microfluidic devices inside a water matrix containing SDS surfactant (SDS = sodium dodecyl sulfate). Variation of water and organic flow rates in the fluidic channels was used to control droplet size and separation. Droplet composition could be controlled by varying flow rates of two joined organic streams. Organic-phase synthetic reactions within the droplets were demonstrated with the bromination of alkenes inside benzene droplets.
基于硫醇烯的树脂的快速成型光刻技术被用于制造对脂肪族和芳香族有机溶剂稳定的微流控装置。对交联聚合物基质在各种有机溶剂中的溶胀进行了定量,并描述了这些微流控装置的耐溶剂性能。在含有十二烷基硫酸钠(SDS)表面活性剂的水基质中的微流控装置内产生了尺寸均匀的己烷和甲苯离散液滴。利用流体通道中水和有机物流速的变化来控制液滴大小和分离。通过改变两条相连有机流的流速,可以控制液滴组成。通过苯液滴内烯烃的溴化反应证明了液滴内的有机相合成反应。