We report the use of dielectrophoresis (DEP) to achieve tunability, improve dynamic range and open up for the separation of particles with regard to parameters other than hydrodynamic size in deterministic lateral displacement (DLD) devices. DLD devices have been shown capable of rapidly and continuously separating micrometer sized plastic spheres by size with a resolution of 20 nm in diameter and of being able to handle the separation of biological samples as wide ranging as bacterial artificial chromosomes and blood cells. DEP, while not exhibiting the same resolution in size separation as DLD, has the benefit of being easy to tune and can, by choosing the frequency, be used to probe a variety of particle properties. By combining DLD and ...
Lab-on-chip devices are an emerging microsystem technology in which laboratory functions are miniatu...
The precise separation of nanoscale particles has proven challenging due to diffusion and the need t...
Deterministic Lateral Displacement (DLD) is a label-free particle sorting method that separates by s...
We present experimental results and simulations on a simple method for tunable particle separation b...
We describe a novel particle separation technique that combines deterministic lateral displacement (...
Microfluidics will lead to a revolution in the field of sample analysis and to the development of La...
This paper presents a review of dielectrophoresis (DEP) devices which provide an effective way to ma...
Discussing the topic of the capability of dielectrophoresis (DEP) devices in terms of the selective ...
In this project, the effect of dielectrophoresis (DEP) on particles of micron sized particles when t...
This paper describes the behaviour of particles in a Deterministic Lateral Displacement (DLD) separa...
A polarisable particle in a non-uniform electric field experiences a force arising from the interact...
AbstractThis paper presents a novel dielectrophoresis (DEP) chip for lateral separation of cells/par...
Dielectrophoretic (DEP) force is exerted when a neutral particle is polarized in a non-uniform elect...
Dielectrophoresis—the tendency of a material of high dielectric permittivity to migrate in an electr...
This paper presents the development and experimental analysis of a dielectrophoresis (DEP) system, w...
Lab-on-chip devices are an emerging microsystem technology in which laboratory functions are miniatu...
The precise separation of nanoscale particles has proven challenging due to diffusion and the need t...
Deterministic Lateral Displacement (DLD) is a label-free particle sorting method that separates by s...
We present experimental results and simulations on a simple method for tunable particle separation b...
We describe a novel particle separation technique that combines deterministic lateral displacement (...
Microfluidics will lead to a revolution in the field of sample analysis and to the development of La...
This paper presents a review of dielectrophoresis (DEP) devices which provide an effective way to ma...
Discussing the topic of the capability of dielectrophoresis (DEP) devices in terms of the selective ...
In this project, the effect of dielectrophoresis (DEP) on particles of micron sized particles when t...
This paper describes the behaviour of particles in a Deterministic Lateral Displacement (DLD) separa...
A polarisable particle in a non-uniform electric field experiences a force arising from the interact...
AbstractThis paper presents a novel dielectrophoresis (DEP) chip for lateral separation of cells/par...
Dielectrophoretic (DEP) force is exerted when a neutral particle is polarized in a non-uniform elect...
Dielectrophoresis—the tendency of a material of high dielectric permittivity to migrate in an electr...
This paper presents the development and experimental analysis of a dielectrophoresis (DEP) system, w...
Lab-on-chip devices are an emerging microsystem technology in which laboratory functions are miniatu...
The precise separation of nanoscale particles has proven challenging due to diffusion and the need t...
Deterministic Lateral Displacement (DLD) is a label-free particle sorting method that separates by s...