An effective mechanism for rapid and efficient microfluidic particle trapping and concentration is proposed without requiring any mechanically moving parts. When a voltage beyond the threshold atmospheric ionization value is applied on a sharp electrode tip mounted at an angle above a microfluidic liquid chamber, the bulk electrohydrodynamic air thrust that is generated results in interfacial shear and, hence, primary azimuthal liquid surface recirculation. This discharge driven vortex mechanism, in turn, causes a secondary bulk meridional liquid recirculation, which produces an inward radial force near the bottom of the chamber. Particles suspended in the liquid are then rapidly convected by the bulk recirculation toward the bottom, where ...
In a similar fashion to Einstein's tea leaf paradox, the rotational liquid flow induced by ionic win...
Microfluidics is a design and fabrication of system which involve in manipulating small amount of li...
Abstract- This paper presents a microfluidic device for magnetophoretic separation red blood cells f...
An effective mechanism for rapid and efficient microfluidic particle trapping and concentration is p...
Abstract — We discuss the mechanisms by which bulk electro-hydrodynamic air thrust or ionic wind gen...
The dominance of surface tension and viscous effects over body forces such as inertia, gravity or ce...
The dominance of surface tension and viscous effects over body forces such as inertia, gravity or ce...
In recent years, microfluidic chips have proven ideal tools for biochemical analysis, which, however...
Microfluidics has developed as a set of powerful tools that have greatly advanced in some areas of b...
Separating plasma from blood using a microfluidic platform is favored and beneficial in point-of-car...
A new microfluidic approach for charge-based particle separation using combined hydrodynamic and ele...
Following the emergence of many blood transfusion-associated diseases, novel passive cell separation...
A hybrid microfluidic device that uses hydrodynamic forces to separate human plasma from blood cells...
A microfluidic filtration device based on the configuration of two curved parallel lanes connected t...
International audienceIt is well known that when a suspension of cells flows in small vessels (arter...
In a similar fashion to Einstein's tea leaf paradox, the rotational liquid flow induced by ionic win...
Microfluidics is a design and fabrication of system which involve in manipulating small amount of li...
Abstract- This paper presents a microfluidic device for magnetophoretic separation red blood cells f...
An effective mechanism for rapid and efficient microfluidic particle trapping and concentration is p...
Abstract — We discuss the mechanisms by which bulk electro-hydrodynamic air thrust or ionic wind gen...
The dominance of surface tension and viscous effects over body forces such as inertia, gravity or ce...
The dominance of surface tension and viscous effects over body forces such as inertia, gravity or ce...
In recent years, microfluidic chips have proven ideal tools for biochemical analysis, which, however...
Microfluidics has developed as a set of powerful tools that have greatly advanced in some areas of b...
Separating plasma from blood using a microfluidic platform is favored and beneficial in point-of-car...
A new microfluidic approach for charge-based particle separation using combined hydrodynamic and ele...
Following the emergence of many blood transfusion-associated diseases, novel passive cell separation...
A hybrid microfluidic device that uses hydrodynamic forces to separate human plasma from blood cells...
A microfluidic filtration device based on the configuration of two curved parallel lanes connected t...
International audienceIt is well known that when a suspension of cells flows in small vessels (arter...
In a similar fashion to Einstein's tea leaf paradox, the rotational liquid flow induced by ionic win...
Microfluidics is a design and fabrication of system which involve in manipulating small amount of li...
Abstract- This paper presents a microfluidic device for magnetophoretic separation red blood cells f...