首页> 外文会议>International Solid-State Sensors, Actuators and Microsystems Conference >A PASSIVE MICROFLUIDIC VALVE USING SUPERHYDROPHOBIC/HYDROPHILIC NANOSTRUCTURES FOR LAB-ON-A-CHIP (LOC) SYSTEMS
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A PASSIVE MICROFLUIDIC VALVE USING SUPERHYDROPHOBIC/HYDROPHILIC NANOSTRUCTURES FOR LAB-ON-A-CHIP (LOC) SYSTEMS

机译:一种用于使用超疏水/亲水纳米结构的无源微流体瓣膜用于芯片(LOM)系统

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This paper describes a passive microfluidic valve, which has an integrated superhydrophobic surface in one of the channels to selectively inhibit the flow of water based reagents and pass aqueous solutions containing surfactants. The microchannels were fabricated by standard photolithography and wet etching techniques. The superhydrophobic polymer patch was fabricated using the layer-by-layer (LBL) deposition technique, in which multiple layers of polyelectrolytes were coated on a channel wall followed by silica nanoparticle treatment. The channels were sealed with a polydimethylsiloxane (PDMS) slab by treating under oxygen plasma. The fabricated microfluidic valve was tested with liquids flowing in the microchannels under capillary action. It is shown that the valve selectively regulates the flow of test samples. The water sample stops at the front of superhydrophobic patch and the 2-isopropanol flows through the channels without any resistance.
机译:本文描述了一种被动微流体瓣膜,其在一个通道中具有集成的超疏水表面,以选择性地抑制水基试剂的流动并通过含有表面活性剂的水溶液。通过标准光刻和湿法蚀刻技术制造微通道。使用层 - 逐层(LBL)沉积技术制造超疏水聚合物贴剂,其中将多层的聚电解质涂覆在沟道壁上,然后涂有二氧化硅纳米粒子处理。通过在氧等离子体下处理,用聚二甲基硅氧烷(PDMS)板密封通道。用在毛细管作用下在微通道中流动的液体测试制造的微流体阀。结果表明,阀门选择性地调节测试样品的流动。水样在超疏水蛋白的前部停止,2-异丙醇流过通道而没有任何阻力。

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