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Laser micro-engineering of functionalized cyclic olefin polymers for microfluidic applications

机译:用于微流体应用的官能化环烯烃聚合物的激光微型工程

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Direct-write laser processing has been demonstrated to be capable of both surface patterning of micro- and nanoscale structures on polymer surfaces without significant modification of the surface chemistry or optical transmission of the laser processed area. In this work, the creation of microchannels via direct-write laser processing of 188 μm thickness cyclic olefin polymers is demonstrated, along with a route towards channel functionalization. Cyclic olefin polymers (COP) are an emerging class of polymers noted for their high chemical resistance, biocompatibility and higher optical transparency when compared to other common polymers. These properties make them excellent substrates for the fabrication of microfluidic devices. This paper presents the first investigation into infrared laser processing of COP using a 1064 run Nd:YAG laser. Scanning electron microscopy and Raman spectroscopy were utilized to investigate the morphology and composition of these laser textured surfaces. A route for functionalization of these substrates for chemical and biological speciation and separation was examined using carbon nanoparticles. The nanoparticles were produced using pulsed laser ablation in liquid (PLAL) which has been reported as a fast and adaptable method for nanoparticle production. The nanoparticles produced were using transmission electron microscopy while the coating of substrates with these CNPs was examined using SEM. These results are discussed in the context of development of a new route for achieving surfaces optimized for microfiuidic-based separations and speciation.
机译:已经证明了直接写入激光加工能够在聚合物表面上的微型和纳米级结构的表面图案化,而不会显着改变表面化学或激光加工区域的光学传输。在这项工作中,通过直接写入激光加工产生188μm厚度环烯烃聚合物的微通道的创建,以及通道官能化的途径。环状烯烃聚合物(COP)是与其他普通聚合物相比,用于其高耐化学性,生物相容性和更高的光学透明性的新出现的聚合物。这些性质使它们用于制造微流体装置的优异基材。本文介绍了使用1064运行ND:YAG激光器对COP的红外激光加工进行第一次调查。使用扫描电子显微镜和拉曼光谱来研究这些激光纹理表面的形态和组成。使用碳纳米颗粒检查这些基材的官能化途径和生物学形态和分离。使用液体(PLAL)中的脉冲激光烧蚀制备纳米颗粒,其被报告为纳米颗粒生产的快速和适应性的方法。所制备的纳米颗粒使用透射电子显微镜检查,同时使用SEM检查具有这些CNP的底物的涂层。这些结果是在开发用于实现针对微泡的分离和形态的表面的新途径的背景下讨论的。

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