AbstractMany biological and artificial transport channels function without direct input of metabolic energy during a transport event and without structural rearrangements involving transitions from a closed to an open state. Nevertheless, such channels are able to maintain efficient and selective transport. It has been proposed that attractive interactions between the transported molecules and the channel can increase the transport efficiency and that the selectivity of such channels can be based on the strength of the interaction of the specifically transported molecules with the channel. Herein, we study the transport through narrow channels in a framework of a general kinetic theory, which naturally incorporates multiparticle occupancy o...
AbstractUsing a diffusion model of molecules moving through a pore, we rationalize why biological ch...
Transport of colloid particles through narrow channels is ubiquitous in cell biology as well as beco...
The field of solid-state nanopores and nanochannels has grown exponentially in the past five years. ...
AbstractMany biological and artificial transport channels function without direct input of metabolic...
Short Abstract — Proper functioning of living cells involves continuous transport of various molecul...
Abstract The motion of molecules across channels and pores is critically important for understanding...
Selectivity is one of the most fundamental concepts in natural sciences, and it is also critically i...
Facilitated translocation of molecules through channels and pores is of fundamental importance for t...
In an analytical model channel transport is analyzed as a function of key parameters, determining ef...
In an analytical model channel transport is analyzed as a function of key parameters, determining ef...
We present a statistical model for solving and predicting the transport of large molecules through s...
In an analytical model channel transport is analyzed as a function of key parameters, determining ef...
The transport of ions across single-molecule protein nanochannels is important both in the biologica...
Biological processes take place far away from equilibrium and are of interest to uncover the basic p...
Passive transport of molecules through nanopores is characterized by the interaction of molecules wi...
AbstractUsing a diffusion model of molecules moving through a pore, we rationalize why biological ch...
Transport of colloid particles through narrow channels is ubiquitous in cell biology as well as beco...
The field of solid-state nanopores and nanochannels has grown exponentially in the past five years. ...
AbstractMany biological and artificial transport channels function without direct input of metabolic...
Short Abstract — Proper functioning of living cells involves continuous transport of various molecul...
Abstract The motion of molecules across channels and pores is critically important for understanding...
Selectivity is one of the most fundamental concepts in natural sciences, and it is also critically i...
Facilitated translocation of molecules through channels and pores is of fundamental importance for t...
In an analytical model channel transport is analyzed as a function of key parameters, determining ef...
In an analytical model channel transport is analyzed as a function of key parameters, determining ef...
We present a statistical model for solving and predicting the transport of large molecules through s...
In an analytical model channel transport is analyzed as a function of key parameters, determining ef...
The transport of ions across single-molecule protein nanochannels is important both in the biologica...
Biological processes take place far away from equilibrium and are of interest to uncover the basic p...
Passive transport of molecules through nanopores is characterized by the interaction of molecules wi...
AbstractUsing a diffusion model of molecules moving through a pore, we rationalize why biological ch...
Transport of colloid particles through narrow channels is ubiquitous in cell biology as well as beco...
The field of solid-state nanopores and nanochannels has grown exponentially in the past five years. ...