The ability to easily and dynamically control fluid mo- tion as well as manipulate particles in suspension is impor- tant for the development and characterization of a variety of lab-on-a-chip processes. Recently, we have introduced an op- tically induced electrokinetic technique termed rapid electro- kinetic patterning (REP) that can rapidly concentrate, trans- late, and pattern colloids of many different sizes and compositions. We have tested polystyrene, latex, and silica beads in sizes ranging from 49 nm to 3.0 um.1,
We study a recently demonstrated AC electrokinetic technique for manipulation and concentration of c...
The rapid electrokinetic patterning (REP) technique has been demonstrated to enable dynamic particle...
Electrokinetic phenomena are a powerful tool used in various scientific and technological applicatio...
This report introduces a novel optically induced AC electrokinetic technique that generates microflu...
We demonstrate an optically induced ac electrokinetic technique that rapidly and continuously accumu...
We demonstrate an optically induced electrokinetic technique that continuously concentrates nanopart...
Microfluidics is ushering a new era in biological analysis and point-of-care diagnostics. By perform...
The rapid electrokinetic patterning (REP) technique developed recently is a hybrid opto-electrokinet...
The realm of microfluidics deals with the study, control and manipulation of fluids that are geometr...
We study a recently demonstrated AC electrokinetic technique for manipulation and concentration of c...
This dissertation explores various physical mechanisms of the Rapid Electrokinetic Patterning (REP) ...
This fluid dynamics video will illustrate an optically induced electrokinetic technique for non-inva...
Rapid Electrokinetic Patterning (REP) is an optoelectric technique for trapping and translating micr...
This dissertation explores various physical mechanisms of the Rapid Electrokinetic Patterning (REP) ...
We demonstrate an opto-electrokinetic technique for noninvasive particle manipulation on the surface...
We study a recently demonstrated AC electrokinetic technique for manipulation and concentration of c...
The rapid electrokinetic patterning (REP) technique has been demonstrated to enable dynamic particle...
Electrokinetic phenomena are a powerful tool used in various scientific and technological applicatio...
This report introduces a novel optically induced AC electrokinetic technique that generates microflu...
We demonstrate an optically induced ac electrokinetic technique that rapidly and continuously accumu...
We demonstrate an optically induced electrokinetic technique that continuously concentrates nanopart...
Microfluidics is ushering a new era in biological analysis and point-of-care diagnostics. By perform...
The rapid electrokinetic patterning (REP) technique developed recently is a hybrid opto-electrokinet...
The realm of microfluidics deals with the study, control and manipulation of fluids that are geometr...
We study a recently demonstrated AC electrokinetic technique for manipulation and concentration of c...
This dissertation explores various physical mechanisms of the Rapid Electrokinetic Patterning (REP) ...
This fluid dynamics video will illustrate an optically induced electrokinetic technique for non-inva...
Rapid Electrokinetic Patterning (REP) is an optoelectric technique for trapping and translating micr...
This dissertation explores various physical mechanisms of the Rapid Electrokinetic Patterning (REP) ...
We demonstrate an opto-electrokinetic technique for noninvasive particle manipulation on the surface...
We study a recently demonstrated AC electrokinetic technique for manipulation and concentration of c...
The rapid electrokinetic patterning (REP) technique has been demonstrated to enable dynamic particle...
Electrokinetic phenomena are a powerful tool used in various scientific and technological applicatio...