This paper presents a novel dielectrophoresis (DEP)-based microfluidic device, which incorporates multiple round hurdles within an S-shaped curved microchannel for continuous manipulation and separation of microparticles. Local nonuniform electric fields are induced by means of both constricted gaps formed between hurdles and outer channel wall, and variable current lengths in curved sections with equal width. Under the effect of negative DEP, particles will be directed away from either inner wall or hurdle edge, as they transport throughout the microchannel electrokinetically. Both experiment and numerical simulation were conducted, the results of which showed that fix-sized (i.e. 10 or 15 Pm) polystyrene (PS) particles could be successful...
Dielectrophoresis (DEP) is the movement of a particle in a non-uniform electric field due to the int...
Microfluidic devices can make a significant impact in many fields where obtaining a rapid response i...
The development of lab-on-a-chip (LOC) devices over the past decade has attracted growing interest. ...
This paper presents a novel dielectrophoresis (DEP)-based microfluidic device, which incorporates mu...
This paper presents a novel dielectrophoresis (DEP)-based microfluidic device which combines round h...
This paper presents a novel dielectrophoresis-based microfluidic device incorporating round hurdles ...
This paper presents the development and experimental analysis of a dielectrophoresis (DEP) system, w...
This work describes the separation of polystyrene microparticles suspended in deionized (DI) water a...
Dielectrophoresis, the induced motion of polarisable particles in non-homogenous electric field, has...
Recent developments in the field of microfluidics have created a multitude of new useful techniques ...
This paper was presented at the 4th Micro and Nano Flows Conference (MNF2014), which was held at Uni...
The investigation of electrokinetic particle transport in confined microchannels has practical signi...
A novel DC-dielectrophoresis (DEP) method employing a pressure-driven flow for the continuous separa...
*Abstract – This paper presents a microfluidic chip with arc-shape electrodes array (ASEA) for separ...
Abstract This article presents a dielectrophoresis (DEP)-based microfluidic device with the three-di...
Dielectrophoresis (DEP) is the movement of a particle in a non-uniform electric field due to the int...
Microfluidic devices can make a significant impact in many fields where obtaining a rapid response i...
The development of lab-on-a-chip (LOC) devices over the past decade has attracted growing interest. ...
This paper presents a novel dielectrophoresis (DEP)-based microfluidic device, which incorporates mu...
This paper presents a novel dielectrophoresis (DEP)-based microfluidic device which combines round h...
This paper presents a novel dielectrophoresis-based microfluidic device incorporating round hurdles ...
This paper presents the development and experimental analysis of a dielectrophoresis (DEP) system, w...
This work describes the separation of polystyrene microparticles suspended in deionized (DI) water a...
Dielectrophoresis, the induced motion of polarisable particles in non-homogenous electric field, has...
Recent developments in the field of microfluidics have created a multitude of new useful techniques ...
This paper was presented at the 4th Micro and Nano Flows Conference (MNF2014), which was held at Uni...
The investigation of electrokinetic particle transport in confined microchannels has practical signi...
A novel DC-dielectrophoresis (DEP) method employing a pressure-driven flow for the continuous separa...
*Abstract – This paper presents a microfluidic chip with arc-shape electrodes array (ASEA) for separ...
Abstract This article presents a dielectrophoresis (DEP)-based microfluidic device with the three-di...
Dielectrophoresis (DEP) is the movement of a particle in a non-uniform electric field due to the int...
Microfluidic devices can make a significant impact in many fields where obtaining a rapid response i...
The development of lab-on-a-chip (LOC) devices over the past decade has attracted growing interest. ...