The selectivity of ion transport in nanochannels is of pi Unary importance for a number of physical, chemical, and biological processes ranging from fluid separation to ion-channel-regulated cellular processes Fundamental understanding of these phenomena requires model nanochannels with well-defined and controllable structural properties Carbon nanotubes provide an ideal choice for nanofluidic studies because of their simple chemistry and structure, the atomic scale smoothness and chemical inertness of the graphitic walls, and the tunability of their diameter and length Here, we investigate the selectivity of single and, for the first time, binary salt mixtures transport through nail ow carbon nanotubes that act as the only pores in a silic...
AbstractSynthetic channels, such as nanotubes, offer the possibility of ion-selective nanoscale pore...
In order to better understand the ionic transport properties of carbon nanotubes, we have been exami...
Two-dimensional (2D) membranes featuring arrays of sub-nanometer pores have applications in purifica...
Biological pores regulate the cellular traffic of a large variety of solutes, often with high select...
Carbon nanotubes offer an outstanding platform for studying molecular transport at nanoscale, and ha...
Both MD simulations and experimental studies have shown that liquid and gas flow through carbon nano...
In this paper, we use applied mathematical modelling to investigate the transportation of ions insid...
Nanofluidic channels confine water and ions down to length scales that are comparable to the sizes o...
Biomimetic nanopores based on membrane-spanning single-walled carbon nanotubes have been designed to...
Carbon nanostructures, especially carbon nanotubes and graphene nanopores, have been suggested for u...
We show that narrow hydrophobic pores have an intrinsic ion selectivity by using single-walled carbo...
Synthetic channels, such as nanotubes, offer the possibility of ion-selective nanoscale pores which ...
The selective transport of K<sup>+</sup> or Na<sup>+</sup> in acqueous solutions by biomembranes is ...
The rational combination of polymer matrix and nanostructured building blocks leads to the formation...
ABSTRACT Synthetic channels, such as nanotubes, offer the possibility of ion-selective nanoscale por...
AbstractSynthetic channels, such as nanotubes, offer the possibility of ion-selective nanoscale pore...
In order to better understand the ionic transport properties of carbon nanotubes, we have been exami...
Two-dimensional (2D) membranes featuring arrays of sub-nanometer pores have applications in purifica...
Biological pores regulate the cellular traffic of a large variety of solutes, often with high select...
Carbon nanotubes offer an outstanding platform for studying molecular transport at nanoscale, and ha...
Both MD simulations and experimental studies have shown that liquid and gas flow through carbon nano...
In this paper, we use applied mathematical modelling to investigate the transportation of ions insid...
Nanofluidic channels confine water and ions down to length scales that are comparable to the sizes o...
Biomimetic nanopores based on membrane-spanning single-walled carbon nanotubes have been designed to...
Carbon nanostructures, especially carbon nanotubes and graphene nanopores, have been suggested for u...
We show that narrow hydrophobic pores have an intrinsic ion selectivity by using single-walled carbo...
Synthetic channels, such as nanotubes, offer the possibility of ion-selective nanoscale pores which ...
The selective transport of K<sup>+</sup> or Na<sup>+</sup> in acqueous solutions by biomembranes is ...
The rational combination of polymer matrix and nanostructured building blocks leads to the formation...
ABSTRACT Synthetic channels, such as nanotubes, offer the possibility of ion-selective nanoscale por...
AbstractSynthetic channels, such as nanotubes, offer the possibility of ion-selective nanoscale pore...
In order to better understand the ionic transport properties of carbon nanotubes, we have been exami...
Two-dimensional (2D) membranes featuring arrays of sub-nanometer pores have applications in purifica...