Electric fields are commonly used to trap and separate micro- and nanoparticles near channel constrictions in microfluidic devices. The trapping mechanism is attributed to the electrical forces arising from the nonhomogeneous electric field caused by the constrictions, and the phenomenon is known as insulator-based-dielectrophoresis (iDEP). In this paper, we describe stationary electroosmotic flows of electrolytes around insulating constrictions induced by low frequency AC electric fields (below 10 kHz). Experimental characterization of the flows is described for two different channel heights (50 and 10 μm), together with numerical simulations based on an electrokinetic model that considers the modification of the local ionic concentration ...
The movement and behaviour of particles suspended in aqueous solutions subjected to non-uniform ac e...
Colloidal particles in electrolytes move in response to electric fields (electrophoresis) and salt c...
Induced-charge electroosmosis has attracted lots of attention from the microfluidic community over t...
We experimentally demonstrate quadrupolar electro-osmotic flows around charged dielectric microspher...
In this work, the effects of polarization of confining charged planar dielectric surfaces on induced...
Microfluidic devices can make a significant impact in many fields where obtaining a rapid response i...
Microfluidic devices can make a significant impact in many fields where obtaining a rapid response i...
Microfluidics refers to systems composed of fluid conduits and chambers with characteristic dimensio...
The motion of polarizable bioparticles under the action of non-uniform ac electric fields is known a...
Microfluidics refers to systems composed of fluid conduits and chambers with characteristic dimensio...
In this paper we examine the motion and behavior of particles suspended in aqueous solutions subject...
Many microfluidic devices have been utilizing ion concentration polarization (ICP) phenomena by usin...
In this work, we report an effective microfluidic technique for continuous-flow trapping and localiz...
The movement and behaviour of particles suspended in aqueous solutions subjected to non-uniform ac e...
Electrokinetic forces are becoming an increasing popular choice for the manipulation of tiny particl...
The movement and behaviour of particles suspended in aqueous solutions subjected to non-uniform ac e...
Colloidal particles in electrolytes move in response to electric fields (electrophoresis) and salt c...
Induced-charge electroosmosis has attracted lots of attention from the microfluidic community over t...
We experimentally demonstrate quadrupolar electro-osmotic flows around charged dielectric microspher...
In this work, the effects of polarization of confining charged planar dielectric surfaces on induced...
Microfluidic devices can make a significant impact in many fields where obtaining a rapid response i...
Microfluidic devices can make a significant impact in many fields where obtaining a rapid response i...
Microfluidics refers to systems composed of fluid conduits and chambers with characteristic dimensio...
The motion of polarizable bioparticles under the action of non-uniform ac electric fields is known a...
Microfluidics refers to systems composed of fluid conduits and chambers with characteristic dimensio...
In this paper we examine the motion and behavior of particles suspended in aqueous solutions subject...
Many microfluidic devices have been utilizing ion concentration polarization (ICP) phenomena by usin...
In this work, we report an effective microfluidic technique for continuous-flow trapping and localiz...
The movement and behaviour of particles suspended in aqueous solutions subjected to non-uniform ac e...
Electrokinetic forces are becoming an increasing popular choice for the manipulation of tiny particl...
The movement and behaviour of particles suspended in aqueous solutions subjected to non-uniform ac e...
Colloidal particles in electrolytes move in response to electric fields (electrophoresis) and salt c...
Induced-charge electroosmosis has attracted lots of attention from the microfluidic community over t...