We describe a quantitative study of vortex generation due to non-equilibrium electrokinetics near a micro/nanochannel interface. The microfluidic device is comprised of a microchannel with a set of nanochannels. These perm-selective nanochannels induce flow instability and thereby produce strong vortex generation. We performed tracking visualization of fluorescent microparticles to obtain velocity fields. Particle tracking enables the calculation of an averaged velocity field and the velocity fluctuations. We characterized the effect of applied voltages and electrolyte concentrations on vortex formation. The experimental results show that an increasing voltage or decreasing concentration results in a larger vortex region and a strong veloci...
ABSTRACT: In this paper, we review recent experimental studies on single-phase and multiphase flows ...
Strong microfluidic vortices are generated when a near-infrared (1,064 nm) laser beam is focused wit...
In recent decades, microfluidics and nanofluidics have risen to the forefront of innovation and tech...
We describe a quantitative study of vortex generation due to non-equilibrium electrokinetics near a ...
We report on our investigation of a low Reynolds number non-equilibrium electrokinetic flow in a mic...
Electrokinetic effects adjacent to charge-selective interfaces (CSI) have been experimentally invest...
We present an approach for the accumulation and filtering of nano- and microparticles in microfluidi...
In this work, we investigated multiple vortical flows inside the ion concentration polarization (ICP...
When an electric field is applied to a microchannel-nanochannel junction for a nanochannel with over...
Ion transport in nano-scale channels is of interest due to their perm-selective behavior, occurring ...
The effect of varying pH on electrokinetically driven flow has been investigated by an optical measu...
U-shaped micro-nanochannels can generate significant flow disturbance as well as locally amplified e...
ABSTRACT In this study a newly designed microchannel is proposed. This design is comprised of a chan...
The aim is to increase the mixing potential of ion species in micro and nano channels with heterogen...
www.rsc.org/loc There can be turbulence in microfluidics at low Reynolds number G. R. Wang,*ab Fang ...
ABSTRACT: In this paper, we review recent experimental studies on single-phase and multiphase flows ...
Strong microfluidic vortices are generated when a near-infrared (1,064 nm) laser beam is focused wit...
In recent decades, microfluidics and nanofluidics have risen to the forefront of innovation and tech...
We describe a quantitative study of vortex generation due to non-equilibrium electrokinetics near a ...
We report on our investigation of a low Reynolds number non-equilibrium electrokinetic flow in a mic...
Electrokinetic effects adjacent to charge-selective interfaces (CSI) have been experimentally invest...
We present an approach for the accumulation and filtering of nano- and microparticles in microfluidi...
In this work, we investigated multiple vortical flows inside the ion concentration polarization (ICP...
When an electric field is applied to a microchannel-nanochannel junction for a nanochannel with over...
Ion transport in nano-scale channels is of interest due to their perm-selective behavior, occurring ...
The effect of varying pH on electrokinetically driven flow has been investigated by an optical measu...
U-shaped micro-nanochannels can generate significant flow disturbance as well as locally amplified e...
ABSTRACT In this study a newly designed microchannel is proposed. This design is comprised of a chan...
The aim is to increase the mixing potential of ion species in micro and nano channels with heterogen...
www.rsc.org/loc There can be turbulence in microfluidics at low Reynolds number G. R. Wang,*ab Fang ...
ABSTRACT: In this paper, we review recent experimental studies on single-phase and multiphase flows ...
Strong microfluidic vortices are generated when a near-infrared (1,064 nm) laser beam is focused wit...
In recent decades, microfluidics and nanofluidics have risen to the forefront of innovation and tech...