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In this paper we present the low cost, batch compatible fabrication of a single-touch catalytically-activated electrochemical micropump, using hydrogen peroxide for the first time. After first mechanically initiation (e.g., a single finger touch), this micropump is capable of achieving high volume rate 67μl/min and high backpressure without the requirement for an electrical power source. These features...
A microfluidic device that works autonomously without external electrical signals was fabricated. The device consisted of chemically actuated microinjectors and microfluidic networks. The operation of the microinjectors was based on the volume change of oxygen bubbles produced as a result of catalytic decomposition of hydrogen peroxide. A hydrogen peroxide solution was transported through a flow channel...
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