International audienceRecent advances in nanofluidics have allowed the exploration of ion transport down to molecular-scale confinement, yet artificial porins are still far from reaching the advanced functionalities of biological ion machinery. Achieving single ion transport that is tunable by an external gate—the ionic analogue of electronic Coulomb blockade—would open new avenues in this quest. However, an understanding of ionic Coulomb blockade beyond the electronic analogy is still lacking. Here, we show that the many-body dynamics of ions in a charged nanochannel result in quantized and strongly nonlinear ionic transport, in full agreement with molecular simulations. We find that ionic Coulomb blockade occurs when, upon sufficient conf...
Ion transport measurements are widely used as an indirect probe for various properties of confined e...
In this dissertation, I examine ion transport in nanopores, which has been met with increased intere...
Biological ion channels are protein nanotubes embedded in, and passing through, the bilipid membrane...
Classical ionic conduction through an inorganic monolayer nanopore is analogous to the quantum-mecha...
The transport of fluids at the nanoscale is fundamental to manifold biological and industrial proces...
The transport of fluids at the nanoscale is fundamental to manifold biological and industrial proces...
Ionic Coulomb blockade (ICB) is an electrostatic phenomenon recently discovered in low-capacitance i...
ABSTRACT: Electrically driven ionic transport of room-temperature ionic liquids (RTILs) through nano...
The conduction and selectivity of calcium/sodium ion channels are described in terms of ionic Coulom...
Understanding and controlling water or ion transport in nanochannels plays an important role in furt...
Electrically driven ionic transport of room-temperature ionic liquids (RTILs) through nanopores is s...
Biological molecular machines perform the work of supporting life at the smallest of scales, includi...
The nanoscale represents a fundamentally new regime for lab-on-a-chip type fluidic systems, because ...
The field of nanofluidics has shown considerable progress over the past decade thanks to key instrum...
141 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2008.Finally, we demonstrate a hie...
Ion transport measurements are widely used as an indirect probe for various properties of confined e...
In this dissertation, I examine ion transport in nanopores, which has been met with increased intere...
Biological ion channels are protein nanotubes embedded in, and passing through, the bilipid membrane...
Classical ionic conduction through an inorganic monolayer nanopore is analogous to the quantum-mecha...
The transport of fluids at the nanoscale is fundamental to manifold biological and industrial proces...
The transport of fluids at the nanoscale is fundamental to manifold biological and industrial proces...
Ionic Coulomb blockade (ICB) is an electrostatic phenomenon recently discovered in low-capacitance i...
ABSTRACT: Electrically driven ionic transport of room-temperature ionic liquids (RTILs) through nano...
The conduction and selectivity of calcium/sodium ion channels are described in terms of ionic Coulom...
Understanding and controlling water or ion transport in nanochannels plays an important role in furt...
Electrically driven ionic transport of room-temperature ionic liquids (RTILs) through nanopores is s...
Biological molecular machines perform the work of supporting life at the smallest of scales, includi...
The nanoscale represents a fundamentally new regime for lab-on-a-chip type fluidic systems, because ...
The field of nanofluidics has shown considerable progress over the past decade thanks to key instrum...
141 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2008.Finally, we demonstrate a hie...
Ion transport measurements are widely used as an indirect probe for various properties of confined e...
In this dissertation, I examine ion transport in nanopores, which has been met with increased intere...
Biological ion channels are protein nanotubes embedded in, and passing through, the bilipid membrane...