The article presents a new application of the modified H-filter with insulating rectangular blocks using negative and positive DEP for separation of multiple particles in a continuous pressure-driven flow. The multiple insulating blocks fabricated along the main channel induce spatially nonuniform electric fields which exert differential repulsive (negative) or attractive (positive) DEP forces on particles, depending on the size and the polarizability of particles relative to their suspending medium. As a result, particles of different sizes and polarizability can be separated into different outlets of the H-filter. Numerical simulations are also performed to analyze the effects of block gap and width on electric field distribution and DEP ...
This paper describes the behaviour of particles in a Deterministic Lateral Displacement (DLD) separa...
Microfluidic devices can make a significant impact in many fields where obtaining a rapid response i...
This study introduces a new generation of dielectrophoretic-based microfluidic device for the precis...
Particle separation is important in chemical and biomedical analysis. Among all particle separation ...
Cell manipulation and separation are critical in biomedical diagnosis. Typical techniques such as fl...
In this paper a design of a new dielectrophoretic microfilter is proposed, based on electrodes confi...
This article describes the engineering development of a continuous-flow, selective particle filter/c...
We have fabricated a microfluidic device based on a novel geometrical arrangement of lateral metal e...
This paper presents a novel dielectrophoresis (DEP)-based microfluidic device, which incorporates mu...
This paper presents the development and experimental analysis of a dielectrophoresis (DEP) system, w...
This paper presents a novel dielectrophoresis (DEP)-based microfluidic device which combines round h...
Particle separation is indispensable in many microfluidic systems and holds a broad range of biomedi...
Dielectrophoretic (DEP) force is exerted when a neutral particle is polarized in a non-uniform elect...
This paper presents a novel dielectrophoresis-based microfluidic device incorporating round hurdles ...
This report illustrates the learning and researching experiments of that the author has undertaken t...
This paper describes the behaviour of particles in a Deterministic Lateral Displacement (DLD) separa...
Microfluidic devices can make a significant impact in many fields where obtaining a rapid response i...
This study introduces a new generation of dielectrophoretic-based microfluidic device for the precis...
Particle separation is important in chemical and biomedical analysis. Among all particle separation ...
Cell manipulation and separation are critical in biomedical diagnosis. Typical techniques such as fl...
In this paper a design of a new dielectrophoretic microfilter is proposed, based on electrodes confi...
This article describes the engineering development of a continuous-flow, selective particle filter/c...
We have fabricated a microfluidic device based on a novel geometrical arrangement of lateral metal e...
This paper presents a novel dielectrophoresis (DEP)-based microfluidic device, which incorporates mu...
This paper presents the development and experimental analysis of a dielectrophoresis (DEP) system, w...
This paper presents a novel dielectrophoresis (DEP)-based microfluidic device which combines round h...
Particle separation is indispensable in many microfluidic systems and holds a broad range of biomedi...
Dielectrophoretic (DEP) force is exerted when a neutral particle is polarized in a non-uniform elect...
This paper presents a novel dielectrophoresis-based microfluidic device incorporating round hurdles ...
This report illustrates the learning and researching experiments of that the author has undertaken t...
This paper describes the behaviour of particles in a Deterministic Lateral Displacement (DLD) separa...
Microfluidic devices can make a significant impact in many fields where obtaining a rapid response i...
This study introduces a new generation of dielectrophoretic-based microfluidic device for the precis...