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Reconfigurable microfluidic pump enabled by opto-electrical-thermal transduction

Published Web Location

https://doi.org/10.1063/1.4824989
Abstract

Flexible integration of a microfluidic system comprising pumps, valves, and microchannels was realized by an optoelectronic reconfigurable microchannels (OERM) technique. Projecting a low light fluidic device pattern - e.g., pumps, valves, and channels - onto an OERM platform generates Joule heating and melts the substrate in the bright area on the platform; thus, the fluidic system can be reconfigured by changing the projected light pattern. Hexadecane was used as the substrate of the microfluidic system. The volume change of hexadecane during the liquid-solid phase transition was utilized to generate pumping pressure. The system can pump nanoliters of water within several seconds. © 2013 AIP Publishing LLC.

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