Ion transport measurements are widely used as an indirect probe for various properties of confined electrolytes. It is generally assumed that the ion concentration in a nanoscale channel is equal to the ion concentration in the macroscopic reservoirs it connects to, with deviations arising only in the presence of surface charges on the channel walls. Here, we show that this assumption may break down even in a neutral channel due to electrostatic correlations between the ions arising in the regime of interaction confinement, where Coulomb interactions are reinforced due to the presence of the channel walls. We focus on a one-dimensional channel geometry, where an exact evaluation of the electrolyte’s partition function is possible with a tra...
International audienceUnderstanding ionic solutions in single-digit nanoconfinement is crucial to ex...
International audienceUnderstanding ionic solutions in single-digit nanoconfinement is crucial to ex...
International audienceUnderstanding ionic solutions in single-digit nanoconfinement is crucial to ex...
Ion transport measurements are widely used as an indirect probe for various properties of confined e...
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...
Nanometer-sized electrodes are used to probe the transport of ions in liquid by monitoring heterogen...
Diffusion is one of the most fundamental properties of ionic transport in solutions. Here, we presen...
A nanoslit is a long, extremely narrow (nanometers apart) opening between two parallel plates. An ov...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, February, 2020Cataloge...
Synthetic nanopores and mesoscopic protein channels have common traits like the importance of electr...
141 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2008.Finally, we demonstrate a hie...
141 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2008.Finally, we demonstrate a hie...
International audienceUnderstanding ionic solutions in single-digit nanoconfinement is crucial to ex...
The effects of ion–ion and ion–wall correlations in nanochannels are explored, specifically how they...
International audienceUnderstanding ionic solutions in single-digit nanoconfinement is crucial to ex...
International audienceUnderstanding ionic solutions in single-digit nanoconfinement is crucial to ex...
International audienceUnderstanding ionic solutions in single-digit nanoconfinement is crucial to ex...
Ion transport measurements are widely used as an indirect probe for various properties of confined e...
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...
Nanometer-sized electrodes are used to probe the transport of ions in liquid by monitoring heterogen...
Diffusion is one of the most fundamental properties of ionic transport in solutions. Here, we presen...
A nanoslit is a long, extremely narrow (nanometers apart) opening between two parallel plates. An ov...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, February, 2020Cataloge...
Synthetic nanopores and mesoscopic protein channels have common traits like the importance of electr...
141 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2008.Finally, we demonstrate a hie...
141 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2008.Finally, we demonstrate a hie...
International audienceUnderstanding ionic solutions in single-digit nanoconfinement is crucial to ex...
The effects of ion–ion and ion–wall correlations in nanochannels are explored, specifically how they...
International audienceUnderstanding ionic solutions in single-digit nanoconfinement is crucial to ex...
International audienceUnderstanding ionic solutions in single-digit nanoconfinement is crucial to ex...
International audienceUnderstanding ionic solutions in single-digit nanoconfinement is crucial to ex...