In this article, we present a novel method of spatial manipulation and assembly of nanoparticles via atomic force microscopy tip-induced dielectrophoresis (AFM-DEP). This method combines the high-accuracy positioning of AFM with the parallel manipulation of DEP. A spatially nonuniform electric field is induced by applying an alternating current (AC) voltage between the conductive AFM probe and an indium tin oxide glass substrate. The AFM probe acted as a movable DEP tweezer for nanomanipulation and assembly of nanoparticles. The mechanism of AFM-DEP was analyzed by numerical simulation. The effects of solution depth, gap distance, AC voltage, solution concentration, and duration time were experimentally studied and optimized. Arrays of 200 ...
Abstract only availableThe ability to maneuver and position cells on a micro scale on microchips is ...
L’étude des propriétés singulières de nanoparticules colloïdales synthétisées par voie chimique et l...
L’étude des propriétés singulières de nanoparticules colloïdales synthétisées par voie chimique et l...
In this article, we present a novel method of spatial manipulation and assembly of nanoparticles via...
Atomic force microscopy (AFM) and dielectrophoresis (DEP) technologies have been used as excellent t...
Atomic force microscopy (AFM) and dielectrophoresis (DEP) technologies have been used as excellent t...
This paper presents a method forthe manipulationof magnetic nanoparticles byoptically induced dielec...
We have developed a simple, inexpensive and flexible method to automatically manipulate and assemb...
We have developed a simple, inexpensive and flexible method to automatically manipulate and assemb...
Nanofabrication techniques have always been at the heart of realising novel functional nanodevices. ...
The manipulation of individual micrometer-sized objects has been the focus of significant research e...
A time-resolved method for tip\u27 retraction at micros-scale away from dielectric surfaces has been...
A novel scanning probe microscopy technique has allowed dielectrophoretic force imaging with nanosca...
A novel scanning probe microscopy technique has allowed dielectrophoretic force imaging with nanosca...
In this work the effect of the dielectrophoretic force (DEP) in the self-assembly process of nanopar...
Abstract only availableThe ability to maneuver and position cells on a micro scale on microchips is ...
L’étude des propriétés singulières de nanoparticules colloïdales synthétisées par voie chimique et l...
L’étude des propriétés singulières de nanoparticules colloïdales synthétisées par voie chimique et l...
In this article, we present a novel method of spatial manipulation and assembly of nanoparticles via...
Atomic force microscopy (AFM) and dielectrophoresis (DEP) technologies have been used as excellent t...
Atomic force microscopy (AFM) and dielectrophoresis (DEP) technologies have been used as excellent t...
This paper presents a method forthe manipulationof magnetic nanoparticles byoptically induced dielec...
We have developed a simple, inexpensive and flexible method to automatically manipulate and assemb...
We have developed a simple, inexpensive and flexible method to automatically manipulate and assemb...
Nanofabrication techniques have always been at the heart of realising novel functional nanodevices. ...
The manipulation of individual micrometer-sized objects has been the focus of significant research e...
A time-resolved method for tip\u27 retraction at micros-scale away from dielectric surfaces has been...
A novel scanning probe microscopy technique has allowed dielectrophoretic force imaging with nanosca...
A novel scanning probe microscopy technique has allowed dielectrophoretic force imaging with nanosca...
In this work the effect of the dielectrophoretic force (DEP) in the self-assembly process of nanopar...
Abstract only availableThe ability to maneuver and position cells on a micro scale on microchips is ...
L’étude des propriétés singulières de nanoparticules colloïdales synthétisées par voie chimique et l...
L’étude des propriétés singulières de nanoparticules colloïdales synthétisées par voie chimique et l...