Hypothesis The dynamics of colloidal suspension confined within porous materials strongly differs from that in the bulk. In particular, within porous materials, the presence of boundaries with complex shapes entangles the longitudinal and transverse degrees of freedom inducing a coupling between the transport of the suspension and the density inhomogeneities induced by the walls. Method Colloidal suspension confined within model porous media are characterized by means of active microrheology where a net force is applied on a single colloid (tracer particle) whose transport properties are then studied. The trajectories provided by active microrheology are exploited to determine the local transport coefficients. In order to asses the role of ...
Release of colloids and their subsequent transport into the subsurface environments takes place duri...
In the absence of advection, confined diffusion characterizes transport in many natural and artific...
Accurate prediction of colloid transport in porous media under environmentally relevant conditions r...
HYPOTHESIS The dynamics of colloidal suspension confined within porous materials strongly differs fr...
We analyze the dynamics of a tracer particle embedded in a bath of hard spheres confined in a channe...
Microrheology was proposed almost twenty years ago as a technique to obtain rheological properties i...
From PubMed via Jisc Publications RouterHistory: received 2021-04-27, revised 2021-07-14, accepted 2...
We present experiments and computer simulations of a “tracer” (or “probe”) particle trapped with opt...
In active microrheology, a strong external force is applied to a colloidal probe immersed in a compl...
The motion of a single Brownian particle in a complex fluid can reveal material behavior both at and...
We investigate active particle-tracking microrheology in a colloidal dispersion by Brownian dynamics...
In this study, we have developed a combined lattice Boltzmann-smoothed profile method to explore cou...
We present a first-principles theory for the active nonlinear microrheology of colloidal model syste...
The aim of this thesis is to understand how the diffusive dynamics and flow behaviors of colloidal h...
We study the strongly nonlinear flow behavior of a sticky colloidal dispersion via active microrheol...
Release of colloids and their subsequent transport into the subsurface environments takes place duri...
In the absence of advection, confined diffusion characterizes transport in many natural and artific...
Accurate prediction of colloid transport in porous media under environmentally relevant conditions r...
HYPOTHESIS The dynamics of colloidal suspension confined within porous materials strongly differs fr...
We analyze the dynamics of a tracer particle embedded in a bath of hard spheres confined in a channe...
Microrheology was proposed almost twenty years ago as a technique to obtain rheological properties i...
From PubMed via Jisc Publications RouterHistory: received 2021-04-27, revised 2021-07-14, accepted 2...
We present experiments and computer simulations of a “tracer” (or “probe”) particle trapped with opt...
In active microrheology, a strong external force is applied to a colloidal probe immersed in a compl...
The motion of a single Brownian particle in a complex fluid can reveal material behavior both at and...
We investigate active particle-tracking microrheology in a colloidal dispersion by Brownian dynamics...
In this study, we have developed a combined lattice Boltzmann-smoothed profile method to explore cou...
We present a first-principles theory for the active nonlinear microrheology of colloidal model syste...
The aim of this thesis is to understand how the diffusive dynamics and flow behaviors of colloidal h...
We study the strongly nonlinear flow behavior of a sticky colloidal dispersion via active microrheol...
Release of colloids and their subsequent transport into the subsurface environments takes place duri...
In the absence of advection, confined diffusion characterizes transport in many natural and artific...
Accurate prediction of colloid transport in porous media under environmentally relevant conditions r...