We introduce nanoCapillary Electrokinetic Tracking (nanoCET), an optofluidic platform for continuously measuring the electrophoretic mobility of a single colloidal nanoparticle or macromolecule in vitro with millisecond time resolution and high charge sensitivity. This platform is based on using a nanocapillary optical fiber in which liquids may flow inside a channel embedded inside the light-guiding core and nanoparticles are tracked using elastic light scattering. Using this platform we have experimentally measured the electrophoretic mobility of 60 nm gold nanoparticles in an aqueous environment. Further, using numerical simulations, we demonstrate the underlying electrokinetic dynamics inside the nanocapillary and the necessary steps fo...
Anti-Brownian electrokinetic trapping enables the confinement of single nanoparticles in solution by...
Here we present the realization of a novel fluorescence detection method based on the electromigrati...
The pharmamcokinetics of nanoparticle theranostics can, in principle, be predicted based on nanopart...
We introduce nanoCapillary Electrokinetic Tracking (nanoCET), an optofluidic platform for continuous...
A highly sensitive optical capillary electrophoresis measurement method based on a nanofluidic optic...
To enable detailed studies of interactions between nanoparticles and their environment and the corre...
The electrophoretic mobility of a single nanoparticle depends on its surface charge and its environm...
Nanoparticle tracking velocimetry can be used to measure the hydrodynamic size and the electrophoret...
We present the first detailed experimental observation and analysis of nanoparticle electrophoresis ...
The development of nanoparticle-based applications relies increasingly on our ability to characteriz...
A system for interfacing dark field microscopy (DFM) with capillary electrophoresis (CE) was demonst...
In this study, we focus on electrophoresis, a phenomenon that describes the movement of particles in...
Electric fields can induce various types of motion in liquid suspensions of colloidal nanoparticles....
Optical tracking electrophoresis is a sensitive technique to study the electrical properties of coll...
We present the first detailed experimental observation and analysis of nanoparticle electrophoresis ...
Anti-Brownian electrokinetic trapping enables the confinement of single nanoparticles in solution by...
Here we present the realization of a novel fluorescence detection method based on the electromigrati...
The pharmamcokinetics of nanoparticle theranostics can, in principle, be predicted based on nanopart...
We introduce nanoCapillary Electrokinetic Tracking (nanoCET), an optofluidic platform for continuous...
A highly sensitive optical capillary electrophoresis measurement method based on a nanofluidic optic...
To enable detailed studies of interactions between nanoparticles and their environment and the corre...
The electrophoretic mobility of a single nanoparticle depends on its surface charge and its environm...
Nanoparticle tracking velocimetry can be used to measure the hydrodynamic size and the electrophoret...
We present the first detailed experimental observation and analysis of nanoparticle electrophoresis ...
The development of nanoparticle-based applications relies increasingly on our ability to characteriz...
A system for interfacing dark field microscopy (DFM) with capillary electrophoresis (CE) was demonst...
In this study, we focus on electrophoresis, a phenomenon that describes the movement of particles in...
Electric fields can induce various types of motion in liquid suspensions of colloidal nanoparticles....
Optical tracking electrophoresis is a sensitive technique to study the electrical properties of coll...
We present the first detailed experimental observation and analysis of nanoparticle electrophoresis ...
Anti-Brownian electrokinetic trapping enables the confinement of single nanoparticles in solution by...
Here we present the realization of a novel fluorescence detection method based on the electromigrati...
The pharmamcokinetics of nanoparticle theranostics can, in principle, be predicted based on nanopart...