Several covalent strategies towards surface charge-reversal in nanochannels have been reported with the purpose of manipulating ion transport. However, covalent routes lack dynamism, modularity and post-synthetic flexibility, and hence restrict their applicability in different environments. Here, we introduce a facile non-covalent approach towards charge-reversal in nanochannels (< 10 nm) using strong charge-transfer interactions between dicationic viologen (acceptor) and trianionic pyranine (donor). The polarity of ion transport was switched from anion selective to ambipolar to cation selective by controlling the extent of viologen bound to the pyranine. We could also regulate the ion transport with respect to pH by selecting a donor with ...
Here, we demonstrate an anion controlled molecular gate based on synthetic ion channels modified wit...
We describe the use of asymmetric nanopores decorated with crown ethers for constructing robust sign...
Nanochannels fabricated in ion-tracked polymer membranes have a great range of applications in biote...
Several covalent strategies towards surface charge-reversal in nanochannels have been reported with ...
Noncovalent approaches to achieve smart ion-transport regulation in artificial nanochannels have gar...
Nature’s design of biological ion channels that demonstrates efficient gating and selectivity brings...
In summary, we have described a direct and simple method to control the surface charge properties of...
Biological ion channels can realize delicate mass transport under complicated physiological conditio...
<div id="articleAbsctract"><p>Active control of ion transport in nanoscale channels is attracting in...
The creation of switchable and tunable nanodevices displaying transport properties similar to those ...
From proton exchange membranes in fuel cells to ion channels in biological membranes, the well-speci...
International audienceThe development of bioinspired nano/subnano-sized (<2 nm) ion channels is stil...
In nature, ion channels facilitate the selective transport of ions, water and small organic molecule...
The ion-coupled processes that occur in the plasma membrane regulate the cell machineries in all the...
4-oxo-4-(pyren-4-ylmethoxy) butanoic acid is used as a photolabile protecting group to show the opti...
Here, we demonstrate an anion controlled molecular gate based on synthetic ion channels modified wit...
We describe the use of asymmetric nanopores decorated with crown ethers for constructing robust sign...
Nanochannels fabricated in ion-tracked polymer membranes have a great range of applications in biote...
Several covalent strategies towards surface charge-reversal in nanochannels have been reported with ...
Noncovalent approaches to achieve smart ion-transport regulation in artificial nanochannels have gar...
Nature’s design of biological ion channels that demonstrates efficient gating and selectivity brings...
In summary, we have described a direct and simple method to control the surface charge properties of...
Biological ion channels can realize delicate mass transport under complicated physiological conditio...
<div id="articleAbsctract"><p>Active control of ion transport in nanoscale channels is attracting in...
The creation of switchable and tunable nanodevices displaying transport properties similar to those ...
From proton exchange membranes in fuel cells to ion channels in biological membranes, the well-speci...
International audienceThe development of bioinspired nano/subnano-sized (<2 nm) ion channels is stil...
In nature, ion channels facilitate the selective transport of ions, water and small organic molecule...
The ion-coupled processes that occur in the plasma membrane regulate the cell machineries in all the...
4-oxo-4-(pyren-4-ylmethoxy) butanoic acid is used as a photolabile protecting group to show the opti...
Here, we demonstrate an anion controlled molecular gate based on synthetic ion channels modified wit...
We describe the use of asymmetric nanopores decorated with crown ethers for constructing robust sign...
Nanochannels fabricated in ion-tracked polymer membranes have a great range of applications in biote...