AbstractSynthetic channels, such as nanotubes, offer the possibility of ion-selective nanoscale pores which can broadly mimic the functions of various biological ion channels, and may one day be used as antimicrobial agents, or for treatment of cystic fibrosis. We have designed a carbon nanotube that is selectively permeable to anions. The virtual nanotubes are constructed from a hexagonal array of carbon atoms (graphene) rolled up to form a tubular structure, with an effective radius of 4.53 Å and length of 34 Å. The pore ends are terminated with polar carbonyl groups. The nanotube thus formed is embedded in a lipid bilayer and a reservoir containing ionic solutions is added at each end of the pore. The conductance properties of these synt...
The creation of biomimetic structures based on one-dimensional nanomaterials and lipid membranes wil...
The selective rate of specific ion transport across nanoporous material is critical to biological an...
In this paper, we use applied mathematical modelling to investigate the transportation of ions insid...
Synthetic channels, such as nanotubes, offer the possibility of ion-selective nanoscale pores which ...
ABSTRACT Synthetic channels, such as nanotubes, offer the possibility of ion-selective nanoscale por...
The ability to design ion-selective, synthetic nanotubes which mimic biological ion channels may hav...
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...
Biological pores regulate the cellular traffic of a large variety of solutes, often with high select...
Biological ion channels in membranes are selectively permeable to specific ionic species. They maint...
The selective transport of K<sup>+</sup> or Na<sup>+</sup> in acqueous solutions by biomembranes is ...
The selectivity of ion transport in nanochannels is of pi Unary importance for a number of physical,...
We have designed a carbon nanotube that is selectively permeable to monovalent cations, binds divale...
Abstract: Ionic selectivity across nanochannels is of great importance to biological activities as w...
The narrow hydrophobic interior of a carbon nanotube (CNT) poses a barrier to the transport of water...
The creation of biomimetic structures based on one-dimensional nanomaterials and lipid membranes wil...
The selective rate of specific ion transport across nanoporous material is critical to biological an...
In this paper, we use applied mathematical modelling to investigate the transportation of ions insid...
Synthetic channels, such as nanotubes, offer the possibility of ion-selective nanoscale pores which ...
ABSTRACT Synthetic channels, such as nanotubes, offer the possibility of ion-selective nanoscale por...
The ability to design ion-selective, synthetic nanotubes which mimic biological ion channels may hav...
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...
Biological pores regulate the cellular traffic of a large variety of solutes, often with high select...
Biological ion channels in membranes are selectively permeable to specific ionic species. They maint...
The selective transport of K<sup>+</sup> or Na<sup>+</sup> in acqueous solutions by biomembranes is ...
The selectivity of ion transport in nanochannels is of pi Unary importance for a number of physical,...
We have designed a carbon nanotube that is selectively permeable to monovalent cations, binds divale...
Abstract: Ionic selectivity across nanochannels is of great importance to biological activities as w...
The narrow hydrophobic interior of a carbon nanotube (CNT) poses a barrier to the transport of water...
The creation of biomimetic structures based on one-dimensional nanomaterials and lipid membranes wil...
The selective rate of specific ion transport across nanoporous material is critical to biological an...
In this paper, we use applied mathematical modelling to investigate the transportation of ions insid...