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Cyclic olefin polymers : Emerging materials for lab-on-a-chip applications

机译:环烯烃聚合物:用于实验室芯片应用的新兴材料

摘要

Cyclic olefin polymers (COPs) are increasingly popular as substrate material for microfluidics. This is due to their promising properties, such as high chemical resistance, low water absorption, good optical transparency in the near UV range and ease of fabrication. COPs are commercially available from a range of manufacturers under various brand names (Apel, Arton, Topas, Zeonex and Zeonor). Some of these (Apel and Topas) are made from more than one kind of monomer and therefore also known as cyclic olefin copolymers (COCs). In order to structure these materials, a wide array of fabrication methods is available. Laser ablation and micromilling are direct structuring methods suitable for fast prototyping, whilst injection moulding, hot embossing and nanoimprint lithography are replication methods more appropriate for low-cost production. Using these fabrication methods, a multitude of chemical analysis techniques have already been implemented. These include microchip electrophoresis (MCE), chromatography, solid phase extraction (SPE), isoelectric focusing (IEF) and mass spectrometry (MS). Still much additional work is needed to characterise and utilise the full potential of COP materials. This is especially true within optofluidics, where COPs are still rarely used, despite their excellent optical properties. This review presents a detailed description of the properties of COPs, the available fabrication methods and several selected applications described in the literature.
机译:环状烯烃聚合物(COP)作为微流体的底物材料越来越受欢迎。这是由于它们具有良好的性能,例如高耐化学性,低吸水率,在近紫外线范围内具有良好的光学透明性以及易于制造。 COP可以各种品牌(Apel,Arton,Topas,Zeonex和Zeonor)从许多制造商处购得。其中一些(Apel和Topas)是由一种以上的单体制成的,因此也被称为环状烯烃共聚物(COC)。为了构造这些材料,可以使用各种各样的制造方法。激光烧蚀和微铣削是适合快速成型的直接结构化方法,而注塑成型,热压花和纳米压印光刻技术则更适合于低成本生产。使用这些制造方法,已经实施了多种化学分析技术。其中包括微芯片电泳(MCE),色谱法,固相萃取(SPE),等电聚焦(IEF)和质谱(MS)。要表征和利用COP材料的全部潜力,还需要进行大量工作。在光流体学中尤其如此,尽管光导性能优异,但仍很少使用COP。这篇综述详细介绍了COPs的特性,可用的制造方法以及文献中描述的几种选定的应用。

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