Hybrid opto-electric manipulation in microfluidics/nanofluidics refers to a set of methodologies employing optical modulation of electrokinetic schemes to achieve particle or fluid manipulation at the micro-and nano-scale. Over the last decade, a set of methodologies, which differ in their modulation strategy and/or the length scale of operation, have emerged. These techniques offer new opportunities with their dynamic nature, and their ability for parallel operation has created novel applications and devices. Hybrid opto-electric techniques have been utilized to manipulate objects ranging in diversity from millimetre-sized droplets to nano-particles. This review article discusses the underlying principles, applications and future perspecti...
Noncontact robotic particle grippers with trapping, manipulation, and release functions are highly d...
This report introduces a novel optically induced AC electrokinetic technique that generates microflu...
The optoelectronic tweezers (or optically induced dielectrophoresis (DEP)) have showed the ability t...
The realm of microfluidics deals with the study, control and manipulation of fluids that are geometr...
We demonstrate a new hybrid optoelectric technique that can manipulate objects across several length...
This dissertation explores various physical mechanisms of the Rapid Electrokinetic Patterning (REP) ...
Since the pioneering work of Ashkin and coworkers, back in 1970, optical manipulation gained an incr...
Since the pioneering work of Ashkin and coworkers, back in 1970, optical manipulation gained an incr...
Microfluidic techniques for cell manipulation have been constantly developed and integrated into sma...
Manipulation devices based on magnetic forces, acoustic waves, hydrodynamic flows, light waves, or e...
We demonstrate an opto-electrokinetic technique for noninvasive particle manipulation on the surface...
The rapid electrokinetic patterning (REP) technique developed recently is a hybrid opto-electrokinet...
This fluid dynamics video will illustrate an optically induced electrokinetic technique for non-inva...
Microfluidic techniques for cell manipulation have been constantly developed and integrated into sma...
This fluid dynamics video showcases how optically induced electrowetting can be used to manipulate l...
Noncontact robotic particle grippers with trapping, manipulation, and release functions are highly d...
This report introduces a novel optically induced AC electrokinetic technique that generates microflu...
The optoelectronic tweezers (or optically induced dielectrophoresis (DEP)) have showed the ability t...
The realm of microfluidics deals with the study, control and manipulation of fluids that are geometr...
We demonstrate a new hybrid optoelectric technique that can manipulate objects across several length...
This dissertation explores various physical mechanisms of the Rapid Electrokinetic Patterning (REP) ...
Since the pioneering work of Ashkin and coworkers, back in 1970, optical manipulation gained an incr...
Since the pioneering work of Ashkin and coworkers, back in 1970, optical manipulation gained an incr...
Microfluidic techniques for cell manipulation have been constantly developed and integrated into sma...
Manipulation devices based on magnetic forces, acoustic waves, hydrodynamic flows, light waves, or e...
We demonstrate an opto-electrokinetic technique for noninvasive particle manipulation on the surface...
The rapid electrokinetic patterning (REP) technique developed recently is a hybrid opto-electrokinet...
This fluid dynamics video will illustrate an optically induced electrokinetic technique for non-inva...
Microfluidic techniques for cell manipulation have been constantly developed and integrated into sma...
This fluid dynamics video showcases how optically induced electrowetting can be used to manipulate l...
Noncontact robotic particle grippers with trapping, manipulation, and release functions are highly d...
This report introduces a novel optically induced AC electrokinetic technique that generates microflu...
The optoelectronic tweezers (or optically induced dielectrophoresis (DEP)) have showed the ability t...