Spatial confinement induces microscopic ordering of fluids, which in turn alters many of their dynamic and thermodynamic properties. However, the isothermal compressibility has hitherto been largely overlooked in the literature, despite its obvious connection to the underlying microscopic structure and density fluctuations in confined geometries. Here, we address this issue by probing density profiles and structure factors of hard-sphere fluids in various narrow slits, using x-ray scattering from colloid-filled nanofluidic containers and integral-equation-based statistical mechanics at the level of pair distributions for inhomogeneous fluids. Most importantly, we demonstrate that density fluctuations and isothermal compressibilities in conf...
We investigate how density profiles around a spherical nanoparticle in a critical solvent are affect...
We examine the range of validity of the Gaussian model for various water-like liquids whose intermol...
Unlike macroscopic objects, any system of nanometric size shows characteristics that strongly depend...
Spatial confinement induces microscopic ordering of fluids, which in turn alters many of their dynam...
AbstractSpatial confinement modifies the microscopic structure of dense fluids, thereby inducing for...
The collective diffusion of dense fluids in spatial confinement is studied by combining high-energy ...
Using molecular dynamics simulations, we investigate the effects of different nanoconfinements on co...
We use molecular dynamics simulations to study how the confinement affects the dynamic, thermodynami...
Using classical density functional theory (DFT) we calculate the density profile ρ(r) and local comp...
Hard disks are one of the simplest interacting many-body model system in two dimensions (2D). Here, ...
textRelationships between structure and dynamics in fluids have a wide variety of applications. Beca...
We explore by molecular dynamic simulations the thermodynamical behavior of an anomalous fluid confi...
We have developed a unique approach for studying the ensemble-averaged nearest-neighbor coordination...
Density functional theory of statistical mechanics in a square gradient approximation was used to st...
International audienceThe manipulation of fluids in nanochannels has become a crucial issue for many...
We investigate how density profiles around a spherical nanoparticle in a critical solvent are affect...
We examine the range of validity of the Gaussian model for various water-like liquids whose intermol...
Unlike macroscopic objects, any system of nanometric size shows characteristics that strongly depend...
Spatial confinement induces microscopic ordering of fluids, which in turn alters many of their dynam...
AbstractSpatial confinement modifies the microscopic structure of dense fluids, thereby inducing for...
The collective diffusion of dense fluids in spatial confinement is studied by combining high-energy ...
Using molecular dynamics simulations, we investigate the effects of different nanoconfinements on co...
We use molecular dynamics simulations to study how the confinement affects the dynamic, thermodynami...
Using classical density functional theory (DFT) we calculate the density profile ρ(r) and local comp...
Hard disks are one of the simplest interacting many-body model system in two dimensions (2D). Here, ...
textRelationships between structure and dynamics in fluids have a wide variety of applications. Beca...
We explore by molecular dynamic simulations the thermodynamical behavior of an anomalous fluid confi...
We have developed a unique approach for studying the ensemble-averaged nearest-neighbor coordination...
Density functional theory of statistical mechanics in a square gradient approximation was used to st...
International audienceThe manipulation of fluids in nanochannels has become a crucial issue for many...
We investigate how density profiles around a spherical nanoparticle in a critical solvent are affect...
We examine the range of validity of the Gaussian model for various water-like liquids whose intermol...
Unlike macroscopic objects, any system of nanometric size shows characteristics that strongly depend...