Furthering the promise of graphene-based planar nanofluidic devices as flexible, robust, low cost, and facile large-scale alternatives to conventional nanochannels for ion transport, we show how the nonlinear current-voltage (I-V) characteristics and ion current rectification in these platforms can be enhanced by increasing the system asymmetry. Asymmetric cuts made to the 2D multilayered graphene oxide film, for example, introduces further asymmetry to that natively inherent in the structurally symmetric system, which was recently shown to be responsible for its rectification behavior due to diffusion boundary layer fore-aft asymmetry. Supported by good agreement with theory, we attribute the enhancement to the decrease in the limiting cur...
Charge selective asymmetric nanochannels are used for a variety of applications, such as nanofluidic...
© 2017, Springer-Verlag Berlin Heidelberg. The electrokinetic conductivity of micro-/nanofluidic sys...
The transport of ionic species in nano-fluidic channels has recently attracted tremendous interest i...
Furthering the promise of graphene-based planar nanofluidic devices as flexible, robust, low cost, a...
Structurally symmetric two-dimensional multilayered graphene oxide films, which facilitate ion trans...
Nanofluidic ion transport in nacre-like 2D layered materials attracts broad research interest due to...
Carbon nanofluidic structures made of carbon nanotubes or graphene/graphene oxide have shown great p...
Asymmetrical properties of ion transport have been found in single conical nanopores and partly char...
Recent experiments with electrolytes driven through conical nanopores give evidence of strong rectif...
Recent developments in nanotechnology including fabrication, measurement and characterization have e...
Finite element numerical simulations are used to examine the effects of various parameters on synthe...
In this thesis, nanofluidic diodes were studied theoretically using fundamental physics as a basis. ...
Electrolytes confined in nanochannels with characteristic dimensions comparable to the Debye length ...
Graphene is a single layer of carbon atoms. It is the ultimate surface material that can divide spac...
This manuscript describes the fabrication of a two-dimensional planar junction formed with graphene ...
Charge selective asymmetric nanochannels are used for a variety of applications, such as nanofluidic...
© 2017, Springer-Verlag Berlin Heidelberg. The electrokinetic conductivity of micro-/nanofluidic sys...
The transport of ionic species in nano-fluidic channels has recently attracted tremendous interest i...
Furthering the promise of graphene-based planar nanofluidic devices as flexible, robust, low cost, a...
Structurally symmetric two-dimensional multilayered graphene oxide films, which facilitate ion trans...
Nanofluidic ion transport in nacre-like 2D layered materials attracts broad research interest due to...
Carbon nanofluidic structures made of carbon nanotubes or graphene/graphene oxide have shown great p...
Asymmetrical properties of ion transport have been found in single conical nanopores and partly char...
Recent experiments with electrolytes driven through conical nanopores give evidence of strong rectif...
Recent developments in nanotechnology including fabrication, measurement and characterization have e...
Finite element numerical simulations are used to examine the effects of various parameters on synthe...
In this thesis, nanofluidic diodes were studied theoretically using fundamental physics as a basis. ...
Electrolytes confined in nanochannels with characteristic dimensions comparable to the Debye length ...
Graphene is a single layer of carbon atoms. It is the ultimate surface material that can divide spac...
This manuscript describes the fabrication of a two-dimensional planar junction formed with graphene ...
Charge selective asymmetric nanochannels are used for a variety of applications, such as nanofluidic...
© 2017, Springer-Verlag Berlin Heidelberg. The electrokinetic conductivity of micro-/nanofluidic sys...
The transport of ionic species in nano-fluidic channels has recently attracted tremendous interest i...