Title :
Light-Actuated AC Electroosmosis for Nanoparticle Manipulation
Author :
Chiou, Pei-Yu ; Ohta, Aaron T. ; Jamshidi, Arash ; Hsu, Hsin-Yi ; Wu, Ming C.
Author_Institution :
Mech. & Aerosp. Eng. Dept., Univ. of California, Los Angeles, CA
fDate :
6/1/2008 12:00:00 AM
Abstract :
We present a novel light-actuated ac electroosmosis (LACE) mechanism that allows the concentration and transportation of micro- and nanoscopic particles using light-patterned dynamically reconfigured microfluidic vortices on a photoconductive surface. LACE is realized by sandwiching an aqueous liquid medium between a featureless photoconductive surface and a transparent indium tin oxide electrode. By applying an ac electrical bias with a frequency that is close to the electric double-layer relaxation frequency, a light-patterned virtual electrode can induce ac electroosmotic flow to concentrate and transport nanoscopic particles on the photoconductive surface. By integrating with a spatial light modulator such as a digital micromirror device microdisplay, we can create 31000 microfluidic vortices on a 1.3 times 1-mm2 area for massively parallel trapping of 2- and 1-mum polystyrene beads. We have also demonstrated LACE concentration and transportation of nanoscopic particles including 200- and 50-nm polystyrene beads, lambda-phage DNA molecules, and quantum dots.
Keywords :
electrophoresis; indium compounds; microfluidics; micromanipulators; nanostructured materials; osmosis; photoconductivity; spatial light modulators; digital micromirror device microdisplay; electric double-layer relaxation frequency; featureless photoconductive surface; indium tin oxide electrode; light-actuated ac electroosmosis; light-patterned virtual electrode; micro-particles; microfluidic vortices; nanoparticle manipulation; spatial light modulator; transport nanoscopic particles; Dielectrophoresis (DEP); electroosmosis; electrophoresis; lab-on-a-chip; optoelectronic tweezers;
Journal_Title :
Microelectromechanical Systems, Journal of
DOI :
10.1109/JMEMS.2008.916342