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Integration of Organic Opto-Electrowetting and Poly(ethylene) Glycol Diacrylate (PEGDA) Microfluidics for Droplets Manipulation

Sensors and actuators B, Chemical(2013)

引用 17|浏览5
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摘要
This paper reports a fabrication technology which integrates organic opto-electrowetting (OEW) with PEGDA-based microfluidics between stacked ITO glass chips for droplet generation and manipulation. Organic OEW can be realized by using titanium oxide phthalocyanine (TiOPc) as a photoconductive layer. Optical images can be projected on an organic OEW area to induce the local virtual electrodes which reduce the surface energy. Low-molecular-weight (LMW) PEGDA material is used to form stable and biocompatible microchannels between the stacked ITO glass chips by UV photopolymerization process. PEGDA-based microfluidics provides a simpler way to enhance droplet-in-oil applications in organic OEW. This technology requires only spin-coating and photolithography and is more cost-effective than previous methods.
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关键词
Opto-electrowetting (OEW),TiOPc,Photo-conductor,Electrowetting on dielectric (EWOD),Dielectrophoresis (DEP),Poly(ethylene) glycol diacrylate (PEGDA)
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