The phenomena of dielectrophoresis and electrorotation, collectively referred to as AC electrokinetics, have been used for many years to study, manipulate and separate particles on the nanotechnology, that is the precise manipulation of particles on the nanometre scale. In this paper we present the principles of AC electrokinetics for particle manipulation, review the current state of AC Electrokinetic techniques for the manipulation of particles on the nanometre scale, and consider how these principles may be applied to nanotechnolog
This book details both theoretical and applied aspects of the electrical manipulation of colloidal p...
This paper presents an investigation of electric field strength using the Multi-Physics Finite Eleme...
Numerous applications of micro-/nanofluidics are related to particle transport in micro-/nanoscale c...
Lab-on-Chip systems integrate multiple functionalities on a single platform. Automated or remote man...
Microfluidic systems offer integration of multiple functions on a single platform. Automated or remo...
Electrokinetic phenomena originally developed in colloid chemistry have drawn great attention in mic...
AC electro-kinetics involves the manipulation of particles in non-uniform alternating electric field...
The application of a.c. electric fields to control and manipulate isolated particles in suspension u...
Employing electric phenomena for the spatial manipulation of bioparticles from whole cells down to d...
The ability of electrokinetics to manipulate biological microparticles, such as cells and bacteria, ...
Dielectrophoresis (DEP) is a phenomenon of induced particle motion in non-uniform electric fields. T...
This paper reviews both theory and experimental observation of the AC electrokinetic properties of c...
Colloidal particles suspended in water respond to direct (DC) or alternating current (AC) fields in ...
AC electrokinetics is the study of a particle and fluid motion induced by AC electric fields. In the...
Abstract—Electrokinetics is the study of the motion of bulk fluids or selected particles embedded in...
This book details both theoretical and applied aspects of the electrical manipulation of colloidal p...
This paper presents an investigation of electric field strength using the Multi-Physics Finite Eleme...
Numerous applications of micro-/nanofluidics are related to particle transport in micro-/nanoscale c...
Lab-on-Chip systems integrate multiple functionalities on a single platform. Automated or remote man...
Microfluidic systems offer integration of multiple functions on a single platform. Automated or remo...
Electrokinetic phenomena originally developed in colloid chemistry have drawn great attention in mic...
AC electro-kinetics involves the manipulation of particles in non-uniform alternating electric field...
The application of a.c. electric fields to control and manipulate isolated particles in suspension u...
Employing electric phenomena for the spatial manipulation of bioparticles from whole cells down to d...
The ability of electrokinetics to manipulate biological microparticles, such as cells and bacteria, ...
Dielectrophoresis (DEP) is a phenomenon of induced particle motion in non-uniform electric fields. T...
This paper reviews both theory and experimental observation of the AC electrokinetic properties of c...
Colloidal particles suspended in water respond to direct (DC) or alternating current (AC) fields in ...
AC electrokinetics is the study of a particle and fluid motion induced by AC electric fields. In the...
Abstract—Electrokinetics is the study of the motion of bulk fluids or selected particles embedded in...
This book details both theoretical and applied aspects of the electrical manipulation of colloidal p...
This paper presents an investigation of electric field strength using the Multi-Physics Finite Eleme...
Numerous applications of micro-/nanofluidics are related to particle transport in micro-/nanoscale c...