<p>Due to intrinsic properties, solid-state nanopores are widely used in nanopore technology. Different geometries (cylindrical (CY), hourglass (HG) and conical (CO)) of artificial nanopores have been fabricated and studied. Each was found to promote different transport abilities experimentally. To explore such pore effects, the combination of finite element (FE) and molecular dynamics (MD) simulations with applied electric filed (150 mV) were performed. The dimension of anion-selective protein pore was used as a nanopore template. Different pore geometries with a narrowest diameter ranging from 1.8 to 1.8 μm were studied here. Firstly, we found that the narrowest regions at a pore orifice in CO and constriction site in HG maximise water ve...
Fluid transport in narrow pores is central to the design and optimization of nanoporous materials in...
Combining a high degree of selectivity and nanoscale dimensions, biological pores are attractive pot...
Combining a high degree of selectivity and nanoscale dimensions, biological pores are attractive pot...
Water transport through aquaporin water channels occurs extensively in cell membranes. Hourglass-sha...
Water transport through aquaporin water channels occurs extensively in cell membranes. Hourglass-sha...
Nanopores have demonstrated an extraordinary ability to allow water molecules to pass through their ...
Nanopores attracted a great deal of scientific interest as templates for biological sensors as well ...
Nanopores attracted a great deal of scientific interest as templates for biological sensors as well ...
Biological nanopores such as aquaporins combine the opposing functions of high water permeation and ...
International audiencePressure-driven ion transport through conical and hourglass-shape (double coni...
Molecular dynamics simulations are used to study the function of hydrophobic gates within models of ...
Biological nanopores such as aquaporins combine the opposing functions of high water permeation and ...
Molecular dynamics simulations are used to study the function of hydrophobic gates within models of ...
As the solid-state nanochannels are hourglass-shaped as opposed to having a straight structure, litt...
Equilibrium (HMD) and nonequilibrium molecular dynamics (NEMD) simulations were conducted to investi...
Fluid transport in narrow pores is central to the design and optimization of nanoporous materials in...
Combining a high degree of selectivity and nanoscale dimensions, biological pores are attractive pot...
Combining a high degree of selectivity and nanoscale dimensions, biological pores are attractive pot...
Water transport through aquaporin water channels occurs extensively in cell membranes. Hourglass-sha...
Water transport through aquaporin water channels occurs extensively in cell membranes. Hourglass-sha...
Nanopores have demonstrated an extraordinary ability to allow water molecules to pass through their ...
Nanopores attracted a great deal of scientific interest as templates for biological sensors as well ...
Nanopores attracted a great deal of scientific interest as templates for biological sensors as well ...
Biological nanopores such as aquaporins combine the opposing functions of high water permeation and ...
International audiencePressure-driven ion transport through conical and hourglass-shape (double coni...
Molecular dynamics simulations are used to study the function of hydrophobic gates within models of ...
Biological nanopores such as aquaporins combine the opposing functions of high water permeation and ...
Molecular dynamics simulations are used to study the function of hydrophobic gates within models of ...
As the solid-state nanochannels are hourglass-shaped as opposed to having a straight structure, litt...
Equilibrium (HMD) and nonequilibrium molecular dynamics (NEMD) simulations were conducted to investi...
Fluid transport in narrow pores is central to the design and optimization of nanoporous materials in...
Combining a high degree of selectivity and nanoscale dimensions, biological pores are attractive pot...
Combining a high degree of selectivity and nanoscale dimensions, biological pores are attractive pot...