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Characteristics and fluidic properties of porous monoliths prepared by radiation-induced polymerization for Lab-on-a-Chip applications

机译:辐射诱导聚合为芯片实验室应用制备的多孔整料的特性和流体性质

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Porous polymer monoliths were prepared by UV- or EB-induced polymerization of hydroxyethyl methacrylate (HEMA) and ethylene dimethacrylate (EDMA) as network precursors dissolved in porogenic solvent mixtures composed of methanol and n-hexane.The fluidic properties and the pressure resistance of porous monoliths synthesized into lmm i.d.capillaries and in 100mum-wide microchannels were investigated.The influence of photopolymerization time (or electron beam dose) and monomer content on flow properties is discussed on the basis of morphological features.The two types of radiation can be used to achieve the in situ fabrication of monolith inside microsystems.The permeability of the porous monoliths can be adjusted by tuning compositional and processing parameters.
机译:多孔聚合物整料是通过将UVMA或EB引发的甲基丙烯酸羟乙酯(HEMA)和二甲基丙烯酸乙二酯(EDMA)聚合成网络前体而制备的,将其溶于甲醇和正己烷组成的成孔溶剂混合物中。研究了在1mm毛细管和100mm宽微通道中合成的整体结构,并根据形态特征探讨了光聚合时间(或电子束剂量)和单体含量对流动性能的影响,可以使用两种辐射方式可以通过调节成分和工艺参数来调节多孔整料的渗透性。

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