Diffusion in constrained geometries is paramount to transport across biological membranes and in mesoporous materials. Although the transported species vary from system to system, the underlying physical mechanisms are universal. However, there is an imbalance between theory and quantitative experimental model systems. We have recently introduced a new synthetic approach to mimic molecular diffusion based on colloidal particles, digital video microscopy, particle tracking, microfluidics and holographic optical tweezers. In this paper we report useful guidelines for the fabrication, handling and characterisation of the microfluidic chips and a study of diffusion coefficients, particle attempt and translocation rates through microfluidic chan...
The cellular environment is characterized by confinement and macro-molecular crowding: both concepts...
We are working towards building a CAD tool (NetFlow) for microfluidic systems. To support the develo...
Diffusion is the fundamental process behind many molecular phenomena such as the mixing of substance...
Binding-sites which facilitate the transport of substrates across membranes are ubiquitous in membra...
International audienceThis paper presents experimental results about transport of dilute suspensions...
The molecular diffusion dynamics in unconstrained cases has been studied thoroughly during the last ...
The understanding of diffusion through porous materials is a crucial aspect for designing superior c...
Biomicrofluidics is an emerging field at the cross roads of microfluidics and life sciences which re...
We will report on a systematic study, aimed at understanding the dynamics of colloidal hard spheres ...
International audienceA biomimetic model of cell-cell communication was developed to probe the passi...
This is the final version of the article. Available from the publisher via the DOI in this record.We...
We report on a microfluidic device that generates separate solution environments in macroscopic volu...
We study the spatial dependence of the mobility of microparticles diffusing close to an edge of a sq...
Single-file diffusion is a ubiquitous physical process exploited by living and synthetic systems to ...
The problem of transport through nanochannels is one of the major questions in cell biology, with a ...
The cellular environment is characterized by confinement and macro-molecular crowding: both concepts...
We are working towards building a CAD tool (NetFlow) for microfluidic systems. To support the develo...
Diffusion is the fundamental process behind many molecular phenomena such as the mixing of substance...
Binding-sites which facilitate the transport of substrates across membranes are ubiquitous in membra...
International audienceThis paper presents experimental results about transport of dilute suspensions...
The molecular diffusion dynamics in unconstrained cases has been studied thoroughly during the last ...
The understanding of diffusion through porous materials is a crucial aspect for designing superior c...
Biomicrofluidics is an emerging field at the cross roads of microfluidics and life sciences which re...
We will report on a systematic study, aimed at understanding the dynamics of colloidal hard spheres ...
International audienceA biomimetic model of cell-cell communication was developed to probe the passi...
This is the final version of the article. Available from the publisher via the DOI in this record.We...
We report on a microfluidic device that generates separate solution environments in macroscopic volu...
We study the spatial dependence of the mobility of microparticles diffusing close to an edge of a sq...
Single-file diffusion is a ubiquitous physical process exploited by living and synthetic systems to ...
The problem of transport through nanochannels is one of the major questions in cell biology, with a ...
The cellular environment is characterized by confinement and macro-molecular crowding: both concepts...
We are working towards building a CAD tool (NetFlow) for microfluidic systems. To support the develo...
Diffusion is the fundamental process behind many molecular phenomena such as the mixing of substance...