We demonstrate an optically induced ac electrokinetic technique that rapidly and continuously accumulates colloids on a parallel-plate electrode surface resulting in a crystalline-like aggregation. Electrothermal hydrodynamics produce a microfluidic vortex that carries suspended particles toward its center where they are trapped by local ac electrokinetic hydrodynamic forces. We characterize the rate of particle aggregation as a function of the applied ac voltage, ac frequency and illumination intensity. Hundreds of polystyrene particles (1.0 mu m) suspended in a low conductivity solution (2.4 mS m(-1)) were captured at a range of voltages (5-20 V-pp) and frequencies (20-150 kHz) with an optical power of approximately 20 mW. This technique ...
Electrokinetic phenomena are a powerful tool used in various scientific and technological applicatio...
Experiments are described on the electrophoretic mobility of a single isolated colloid and the elect...
The rapid electrokinetic patterning (REP) technique developed recently is a hybrid opto-electrokinet...
We demonstrate an optically induced electrokinetic technique that continuously concentrates nanopart...
We study a recently demonstrated AC electrokinetic technique for manipulation and concentration of c...
This report introduces a novel optically induced AC electrokinetic technique that generates microflu...
The ability to easily and dynamically control fluid mo- tion as well as manipulate particles in susp...
We study a recently demonstrated AC electrokinetic technique for manipulation and concentration of c...
The realm of microfluidics deals with the study, control and manipulation of fluids that are geometr...
Rapid Electrokinetic Patterning (REP) is an optoelectric technique for trapping and translating micr...
We demonstrate an opto-electrokinetic technique for noninvasive particle manipulation on the surface...
This dissertation explores various physical mechanisms of the Rapid Electrokinetic Patterning (REP) ...
Microfluidics is ushering a new era in biological analysis and point-of-care diagnostics. By perform...
This dissertation explores various physical mechanisms of the Rapid Electrokinetic Patterning (REP) ...
This paper presents our work on the automated and parallel manipulation, separation, and concentrati...
Electrokinetic phenomena are a powerful tool used in various scientific and technological applicatio...
Experiments are described on the electrophoretic mobility of a single isolated colloid and the elect...
The rapid electrokinetic patterning (REP) technique developed recently is a hybrid opto-electrokinet...
We demonstrate an optically induced electrokinetic technique that continuously concentrates nanopart...
We study a recently demonstrated AC electrokinetic technique for manipulation and concentration of c...
This report introduces a novel optically induced AC electrokinetic technique that generates microflu...
The ability to easily and dynamically control fluid mo- tion as well as manipulate particles in susp...
We study a recently demonstrated AC electrokinetic technique for manipulation and concentration of c...
The realm of microfluidics deals with the study, control and manipulation of fluids that are geometr...
Rapid Electrokinetic Patterning (REP) is an optoelectric technique for trapping and translating micr...
We demonstrate an opto-electrokinetic technique for noninvasive particle manipulation on the surface...
This dissertation explores various physical mechanisms of the Rapid Electrokinetic Patterning (REP) ...
Microfluidics is ushering a new era in biological analysis and point-of-care diagnostics. By perform...
This dissertation explores various physical mechanisms of the Rapid Electrokinetic Patterning (REP) ...
This paper presents our work on the automated and parallel manipulation, separation, and concentrati...
Electrokinetic phenomena are a powerful tool used in various scientific and technological applicatio...
Experiments are described on the electrophoretic mobility of a single isolated colloid and the elect...
The rapid electrokinetic patterning (REP) technique developed recently is a hybrid opto-electrokinet...