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'Smart' polymeric microfluidics fabricated by plasma processing: controlled wetting, capillary filling and hydrophobic valving

机译:通过等离子体处理制造的“智能”聚合物微流体:受控润湿,毛细管填充和疏水阀

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摘要

We demonstrate a mass-production-amenable technology for fabrication, surface modification and multifunction integration in polymeric microfluidic devices, namely direct lithography on the polymeric substrate followed by polymer plasma etching, and selective plasma deposition. We apply the plasma processing technology to fabricate polymeric microfluidics in poly(methyl methacrylate) (PMMA) and poly(ether ether ketone) (PEEK). First, deep anisotropic O2 plasma etching is utilized to pattern the polymer via an in situ, highly etch-resistant, thin, Si-containing photoresist, or via a thick organic photoresist. Absolute control of surface roughness (from smooth to very rough), and the production of stable-in-time (slowly ageing) superhydrophilic microchannels are demonstrated. Second, we demonstrate the spontaneous capillary pumping through such rough, superhydrophilic plasma-etched microchannels in contrast to smooth ones, even 5 weeks after fabrication. Third, by using C4F8 fluorocarbon plasma deposition through a stencil mask, we produce superhydrophobic patches inside the microchannels, and use them as passive valves. Our approach proposes "smart" multifunctional microfluidics fabricated by a plasma technology toolbox.
机译:我们展示了一种用于聚合物微流体装置中的制造,表面改性和多功能集成的批量生产技术,即在聚合物基板上进行直接光刻,然后进行聚合物等离子刻蚀,以及进行选择性等离子沉积。我们应用等离子体处理技术来制造聚甲基丙烯酸甲酯(PMMA)和聚醚醚酮(PEEK)中的聚合物微流体。首先,利用深各向异性O2等离子体刻蚀,通过原位,高度抗刻蚀,薄而含Si的光刻胶或通过厚有机光刻胶对聚合物进行构图。演示了绝对控制表面粗糙度(从光滑到非常粗糙)以及生产时间稳定(缓慢老化)的超亲水微通道的方法。其次,我们证明了自平滑的毛细泵送通过粗糙的,超亲水的等离子蚀刻微通道,而不是平滑的微通道,甚至在制造后5周。第三,通过模版掩模使用C4F8碳氟化合物等离子体沉积,我们在微通道内部产生了超疏水性斑块,并将其用作被动阀。我们的方法提出了由等离子技术工具箱制造的“智能”多功能微流体。

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