Diffusion is one of the most fundamental properties of ionic transport in solutions. Here, we present experimental studies and theoretical analysis on the ion diffusion in nanochannels. Based on Fick's second law, we develop a current monitoring method to measure ion diffusion coefficient of high solution concentrations in nanochannels. This method is further extended to the cases at medium and low concentrations. Through monitoring ionic current during diffusion, we obtain diffusion coefficients of potassium chloride solution at different concentrations in nanochannels. These diffusion coefficients within the confined space are close to theirs bulk values. It is also found that the apparent ion diffusion equilibrium in the present exp...
The behavior of ion transport through the sub-nm nanopores on the film is is different from the beha...
International audienceFundamental understanding of ionic transport at the nanoscale is essential for...
International audienceFundamental understanding of ionic transport at the nanoscale is essential for...
In this article, a theoretical model that takes into consideration both the diffusion and electric o...
Ion transport measurements are widely used as an indirect probe for various properties of confined e...
Ion transport measurements are widely used as an indirect probe for various properties of confined e...
[[abstract]]Considering recent widespread applications in nanofluidics, we analyze the ionic current...
In charged nanopores, ionic diffusion current reflects the ionic selectivity and ionic permeability ...
We numerically study the sidewall charge effect on the ionic transport characteristics in micro-nano...
The transport of ionic species through nanopores is important in determining the underlying behaviou...
Ion diffusion induced current, Nanochannel, Concentration gradientIn this article, a theoretical mod...
The nanofluidic diode, as one of the emerging nanofluidic logic devices, has been used in many field...
Mass transport through nanopores occurs in various natural systems, including the human body. For ex...
The behavior of ion transport through the sub-nm nanopores on the film is is different from the beha...
International audienceFundamental understanding of ionic transport at the nanoscale is essential for...
The behavior of ion transport through the sub-nm nanopores on the film is is different from the beha...
International audienceFundamental understanding of ionic transport at the nanoscale is essential for...
International audienceFundamental understanding of ionic transport at the nanoscale is essential for...
In this article, a theoretical model that takes into consideration both the diffusion and electric o...
Ion transport measurements are widely used as an indirect probe for various properties of confined e...
Ion transport measurements are widely used as an indirect probe for various properties of confined e...
[[abstract]]Considering recent widespread applications in nanofluidics, we analyze the ionic current...
In charged nanopores, ionic diffusion current reflects the ionic selectivity and ionic permeability ...
We numerically study the sidewall charge effect on the ionic transport characteristics in micro-nano...
The transport of ionic species through nanopores is important in determining the underlying behaviou...
Ion diffusion induced current, Nanochannel, Concentration gradientIn this article, a theoretical mod...
The nanofluidic diode, as one of the emerging nanofluidic logic devices, has been used in many field...
Mass transport through nanopores occurs in various natural systems, including the human body. For ex...
The behavior of ion transport through the sub-nm nanopores on the film is is different from the beha...
International audienceFundamental understanding of ionic transport at the nanoscale is essential for...
The behavior of ion transport through the sub-nm nanopores on the film is is different from the beha...
International audienceFundamental understanding of ionic transport at the nanoscale is essential for...
International audienceFundamental understanding of ionic transport at the nanoscale is essential for...