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Fabrication of multi-layer polymeric micro-sieve having narrow slot pores with conventional ultraviolet-lithography and micro-fabrication techniques

机译:用常规的紫外光刻和微细加工技术制备具有窄缝孔的多层聚合物微筛

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摘要

Fast detection of waterborne pathogens is important for securing the hygiene of drinking water. Detection of pathogens in water at low concentrations and minute quantities demands rapid and efficient enrichment methods in order to improve the signal-to-noise ratio of bio-sensors. We propose and demonstrate a low cost and rapid method to fabricate a multi-layer polymeric micro-sieve using conventional lithography techniques. The micro-fabricated micro-sieves are made of several layers of SU-8 photoresist using multiple coating and exposure steps and a single developing process. The obtained micro-sieves have good mechanical properties, smooth surfaces, high porosity (≈40%), and narrow pore size distribution (coefficient of variation < 3.33%). Sample loading and back-flushing using the multi-layer micro-sieve resulted in more than 90% recovery of pathogens, which showed improved performance than current commercial filters.
机译:快速检测水生病原体对于确保饮用水卫生很重要。为了提高生物传感器的信噪比,检测低浓度和微量的水中病原体需要快速有效的富集方法。我们提出并证明了使用常规光刻技术制造多层聚合物微筛的低成本快速方法。微制造的微筛网由多层SU-8光致抗蚀剂制成,使用多个涂覆和曝光步骤以及单个显影工艺。所得的微筛具有良好的机械性能,光滑的表面,高的孔隙率(约40%)和窄的孔径分布(变异系数<3.33%)。使用多层微筛进行样品加载和反冲洗,可回收超过90%的病原体,与目前的商用过滤器相比,其性能有所提高。

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