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Fabrication of microfluidic chip using foil-assisted CO2 laser ablation for suspended particles separation

机译:使用箔辅助CO 2 激光消融用于悬浮颗粒分离的微流体芯片

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Lab on a chip was mainly used in the simplification of biomedical detection step and separation was one of the indispensable pretreatment during the detection process. In this study, a combination channel of spiral and backward facing step patterns were designed to optimize the separation function without any extra power like electric or magnetic field. The foil-assisted CO laser method was used to fabricate a spiral microfluidic chip with polymethylmethacrylate polymer for the master of suspended particles separation. The laser ablation generated poor surfaces quality with bulge and scorches can be diminished using foil-assisted laser micromachining technique. The low-cost and time-saving procedure, including microchip fabrication and surface modification, has been developed to apply positively in microfluidic separation chip based on the flow distribution design of spiral dean vortices and backward facing step, which can provide 99% separation efficiency within a certain flow range.
机译:芯片上的实验室主要用于生物医学检测步骤的简化,分离是检测过程中不可缺少的预处理之一。在该研究中,设计了一种螺旋和向后面对面图案的组合通道,用于优化分离功能,而无需任何额外的电源或磁场。箔辅助CO激光方法用于制造具有聚甲基丙烯酸甲酯聚合物的螺旋微流体芯片,用于悬浮的颗粒分离。使用箔辅助激光微机械技术可以减小激光消融产生较差的表面质量和凸起的凸起和烧焦。已经开发出低成本和节省的节省程序,包括微芯片制造和表面改性,以基于螺旋Dean涡流的流量分布设计和落后的步骤呈积极的流体分离芯片,其可以在内部提供99%的分离效率一定的流量范围。

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