Recently reported synthetic organic nanopore (SONP) can mimic a key feature of natural ion channels, i.e., selective ion transport. However, the physical mechanism underlying the K+/Na+ selectivity for the SONPs is dramatically different from that of natural ion channels. To achieve a better understanding of the selective ion transport in hydrophobic subnanometer channels in general and SONPs in particular, we perform a series of ab initio molecular dynamics simulations to investigate the diffusivity of aqua Na+ and K+ ions in two prototype hydrophobic nanochannels: (i) an SONP with radius of 3.2 Å, and (ii) single-walled carbon nanotubes (CNTs) with radii of 3–5 Å (these radii are comparable to those of the biological potassium K+ channels...
The field of solid-state nanopores and nanochannels has grown exponentially in the past five years. ...
AbstractHow K+ channels are able to conduct certain cations yet not others remains an important but ...
A detailed characterization of the physics of novel nanopore systems has the potential to revolution...
Recently reported synthetic organic nanopore (SONP) can mimic a key feature of natural ion channels,...
AbstractNarrow hydrophobic regions are a common feature of biological channels, with possible roles ...
We show that narrow hydrophobic pores have an intrinsic ion selectivity by using single-walled carbo...
The selective rate of specific ion transport across nanoporous material is critical to biological an...
Narrow hydrophobic regions are a common feature of biological channels, with possible roles in ion-c...
AbstractBiological ion channels are nanoscale transmembrane pores. When water and ions are enclosed ...
Biological pores regulate the cellular traffic of a large variety of solutes, often with high select...
The ability to design ion-selective, synthetic nanotubes which mimic biological ion channels may hav...
The selective transport of K<sup>+</sup> or Na<sup>+</sup> in acqueous solutions by biomembranes is ...
Abstract: Ionic selectivity across nanochannels is of great importance to biological activities as w...
Using a simple model it is shown that the cost of constraining a hydrated potassium ion inside a nar...
Nanopores have demonstrated an extraordinary ability to allow water molecules to pass through their ...
The field of solid-state nanopores and nanochannels has grown exponentially in the past five years. ...
AbstractHow K+ channels are able to conduct certain cations yet not others remains an important but ...
A detailed characterization of the physics of novel nanopore systems has the potential to revolution...
Recently reported synthetic organic nanopore (SONP) can mimic a key feature of natural ion channels,...
AbstractNarrow hydrophobic regions are a common feature of biological channels, with possible roles ...
We show that narrow hydrophobic pores have an intrinsic ion selectivity by using single-walled carbo...
The selective rate of specific ion transport across nanoporous material is critical to biological an...
Narrow hydrophobic regions are a common feature of biological channels, with possible roles in ion-c...
AbstractBiological ion channels are nanoscale transmembrane pores. When water and ions are enclosed ...
Biological pores regulate the cellular traffic of a large variety of solutes, often with high select...
The ability to design ion-selective, synthetic nanotubes which mimic biological ion channels may hav...
The selective transport of K<sup>+</sup> or Na<sup>+</sup> in acqueous solutions by biomembranes is ...
Abstract: Ionic selectivity across nanochannels is of great importance to biological activities as w...
Using a simple model it is shown that the cost of constraining a hydrated potassium ion inside a nar...
Nanopores have demonstrated an extraordinary ability to allow water molecules to pass through their ...
The field of solid-state nanopores and nanochannels has grown exponentially in the past five years. ...
AbstractHow K+ channels are able to conduct certain cations yet not others remains an important but ...
A detailed characterization of the physics of novel nanopore systems has the potential to revolution...