Manipulation techniques of biomolecules have been proposed for biochemical analysis which combine electrokinetic dynamics, such as electrophoresis or electroosmotic flow, with optical manipulation to provide high throughput and high spatial degrees of freedom. However, there are still challenging problems in nanoscale manipulation due to the diffraction limit of optics. We propose here a new manipulation technique for spatiotemporal control of chemical transport in nanofluids using an inverted electron-beam (EB) lithography system for liquid samples. By irradiating a 2.5 keV EB to a liquid sample through a 100-nm-thick SiN membrane, negative charges can be generated within the SiN membrane, and these negative charges can induce a highly foc...
Although trapping and manipulation of small objects have been of interest for a range of application...
Our laboratory focuses on developing spatially localized chemistries which can produce structures of...
The ability to accurately control micro- and nano-particles in a liquid is fundamentally useful for ...
Manipulation techniques of biomolecules have been proposed for biochemical analysis which combine el...
Manipulation and trapping of single molecules in solution is a useful tool for studies of biological...
ABSTRACT: Remotely manipulating a large number of micro-scopic objects is important to soft-condense...
This dissertation explores various physical mechanisms of the Rapid Electrokinetic Patterning (REP) ...
The realm of microfluidics deals with the study, control and manipulation of fluids that are geometr...
Liquid transport of minute amounts of biomaterials is of paramount importance in many biotechnologic...
Noninvasive manipulation of nanoscopic species in liquids has attracted considerable attention due t...
Investigating biological and synthetic nanoscopic species in liquids, at the ultimate resolution of ...
Electric fields can induce various types of motion in liquid suspensions of colloidal nanoparticles....
Micro- and nanostructures are promising tools in biomedical research, but it remains challenging to ...
Remotely manipulating a large number of microscopic objects is important to soft-condensed matter ph...
Anti-Brownian electrokinetic trapping enables the confinement of single nanoparticles in solution by...
Although trapping and manipulation of small objects have been of interest for a range of application...
Our laboratory focuses on developing spatially localized chemistries which can produce structures of...
The ability to accurately control micro- and nano-particles in a liquid is fundamentally useful for ...
Manipulation techniques of biomolecules have been proposed for biochemical analysis which combine el...
Manipulation and trapping of single molecules in solution is a useful tool for studies of biological...
ABSTRACT: Remotely manipulating a large number of micro-scopic objects is important to soft-condense...
This dissertation explores various physical mechanisms of the Rapid Electrokinetic Patterning (REP) ...
The realm of microfluidics deals with the study, control and manipulation of fluids that are geometr...
Liquid transport of minute amounts of biomaterials is of paramount importance in many biotechnologic...
Noninvasive manipulation of nanoscopic species in liquids has attracted considerable attention due t...
Investigating biological and synthetic nanoscopic species in liquids, at the ultimate resolution of ...
Electric fields can induce various types of motion in liquid suspensions of colloidal nanoparticles....
Micro- and nanostructures are promising tools in biomedical research, but it remains challenging to ...
Remotely manipulating a large number of microscopic objects is important to soft-condensed matter ph...
Anti-Brownian electrokinetic trapping enables the confinement of single nanoparticles in solution by...
Although trapping and manipulation of small objects have been of interest for a range of application...
Our laboratory focuses on developing spatially localized chemistries which can produce structures of...
The ability to accurately control micro- and nano-particles in a liquid is fundamentally useful for ...