Soap films represent unique aqueous systems, whose physical properties can be tuned by acting on their nanoscale structure. Here, we specifically focus on transport properties through membranes realized in the form of soap films. While diffusion phenomena in the water core and surfactant monolayers are described using a continuum model, molecular dynamics is used to compute the static and dynamical properties of water, gases and the surfactant in the monolayers which is hexaethylene glycol monododecyl ether (C12E6). The obtained atomistic details are then incorporated into a drift-diffusion model for consistently extracting a boundary condition for the above continuum model describing transport phenomena at a larger scale. Numerical predict...
To obtain insight in the process of water permeation through a lipid membrane, we performed molecula...
An application of Molecular Dynamics computer simulation (MD) to the process of transport of water t...
A multiscale, physically-based, reaction-diffusion kinetics model is developed for non-steady-state ...
Soap films represent unique aqueous systems, whose physical properties can be tuned by acting on the...
It is generally assumed that permeation through insoluble monolayers is best described in terms of t...
We focus on a novel concept of photosynthetic soft membranes, possibly able to allow the conversion ...
International audienceNearly two decades ago, Couder (1981) and Gharib and Derango (1989) used soap ...
Research into how nanoscale membranes and nanofluidic devices can be used in medicine, process engin...
The ephemeral beauty of soap films is not only a source of wonder and poetic inspiration, but also c...
This paper studies the diffusive and sorption steps of several gases across membranes cast from poly...
Monomolecular films of surfactants at the air-water interface are easy to prepare and to handle, and...
A model to describe the transport across membranes of chemical species dissolved in an incompressibl...
Mesoporous membranes with pore sizes in the range 2-50 nm provide an energy efficient alternative fo...
The modeling description of basic transport phenomena of either liquid, gas or vapor molecules in de...
In this work, a radio-tracer technique has been used to study the permeability of fatty alcohol mono...
To obtain insight in the process of water permeation through a lipid membrane, we performed molecula...
An application of Molecular Dynamics computer simulation (MD) to the process of transport of water t...
A multiscale, physically-based, reaction-diffusion kinetics model is developed for non-steady-state ...
Soap films represent unique aqueous systems, whose physical properties can be tuned by acting on the...
It is generally assumed that permeation through insoluble monolayers is best described in terms of t...
We focus on a novel concept of photosynthetic soft membranes, possibly able to allow the conversion ...
International audienceNearly two decades ago, Couder (1981) and Gharib and Derango (1989) used soap ...
Research into how nanoscale membranes and nanofluidic devices can be used in medicine, process engin...
The ephemeral beauty of soap films is not only a source of wonder and poetic inspiration, but also c...
This paper studies the diffusive and sorption steps of several gases across membranes cast from poly...
Monomolecular films of surfactants at the air-water interface are easy to prepare and to handle, and...
A model to describe the transport across membranes of chemical species dissolved in an incompressibl...
Mesoporous membranes with pore sizes in the range 2-50 nm provide an energy efficient alternative fo...
The modeling description of basic transport phenomena of either liquid, gas or vapor molecules in de...
In this work, a radio-tracer technique has been used to study the permeability of fatty alcohol mono...
To obtain insight in the process of water permeation through a lipid membrane, we performed molecula...
An application of Molecular Dynamics computer simulation (MD) to the process of transport of water t...
A multiscale, physically-based, reaction-diffusion kinetics model is developed for non-steady-state ...