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首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Polymer micromixers bonded to thermoplastic films combining soft-lithography with plasma and aptes treatment processes
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Polymer micromixers bonded to thermoplastic films combining soft-lithography with plasma and aptes treatment processes

机译:结合到热塑薄膜上的聚合物微混合器,结合了软光刻技术和等离子及aptes处理工艺

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Over the past few years, a growing interest on covalent bonding of polydimethylsiloxane (PDMS) microfluidic devices to thermoplastic films has developed due to reduced costs, biocompatibility, and flexibility. The silane reagent, 3-aminopropyltriethoxysilane (APTES) has been applied to create this bonding. Here, we report on the fabrication of replica PDMS micromixer devices from a silicon mold using soft lithography that is rapid, facile, and cost-effective to manufacture. After replica molding, the PDMS micromixer devices were bonded to the APTES-activated thermoplastic films of polyimide, polyethylene terephthalate, and polyethylene naphthalate. Characterization of these thermoplastic surfaces was analyzed by contact angle measurement, surface free energy, and X-ray photoelectron spectroscopy. To demonstrate the functionality of this technology, we have analyzed the PDMS micromixers by a peel test, nonleakages, and mixing with the injection of inks, a surfactant, and varying pH solutions. To our knowledge, this is the first reported example in literature of the PDMS-APTES-thermoplastic films preparation that integrates a complex micromixer device. Here, we have established that the hydrophobicity of both sealed polymers required alteration in order for dispersion of a polar liquid in the mixing loops. The application of a polar solvent before injection can remedy this ill effect formulating a hydrophilic micromixer. These preliminary results demonstrate the feasibility of the fabrication technology, bonding technique, and application of the micromixer that, once optimized, can eventually integrate more components to formulate a lab-on-a-chip with the fabrication of gold microelectrodes for biological analysis of blood or plasma.
机译:在过去的几年中,由于降低了成本,生物相容性和灵活性,人们对聚二甲基硅氧烷(PDMS)微流体装置与热塑性薄膜的共价键合越来越感兴趣。已使用硅烷试剂3-氨基丙基三乙氧基硅烷(APTES)来建立这种键合。在这里,我们报道了使用软光刻技术从硅模具制造复制品PDMS微型混合器设备的过程,该工艺快速,简便且具有成本效益。复制模制后,将PDMS微型混合器设备粘合到APTES活化的聚酰亚胺,聚对苯二甲酸乙二醇酯和聚萘二甲酸乙二醇酯的热塑性薄膜上。通过接触角测量,表面自由能和X射线光电子能谱分析了这些热塑性表面的特性。为了演示该技术的功能,我们通过剥离测试,无渗漏以及与注入墨水,表面活性剂和各种pH溶液的混合来分析PDMS微型混合器。据我们所知,这是PDMS-APTES-热塑性薄膜制备文献中第一个报道的实例,该实例集成了复杂的微混合器设备。在这里,我们已经确定,为了使极性液体在混合回路中分散,两种密封聚合物的疏水性都需要改变。注射前使用极性溶剂可以弥补配制亲水性微混合器的不良影响。这些初步结果证明了制造技术,键合技术和微型混合器的应用的可行性,这种混合器经过优化后,最终可以整合更多的组件,以制造用于血液生物学分析的金微电极来构建芯片实验室。或等离子。

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