The motion of a single Brownian particle in a complex fluid can reveal material behavior both at and away from equilibrium. In active microrheology, a probe particle is driven by an external force through a complex medium and its motion studied in order to infer properties of the embedding material. Most work in microrheology has focused on steady behavior and established the relationship between the motion of the probe, the microstructure, and the effective microviscosity of the medium. Transient behavior in the near-equilibrium, linear-response regime has also been studied via its connection to low-amplitude oscillatory probe forcing and the complex modulus; at very weak forcing, the microstructural response that drives viscosity is indis...
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...
Complex fluids are present in a multitude of forms: polymers, foods, paints, inks, biological materi...
The motion of a single Brownian particle in a complex fluid can reveal material behavior both at and...
In active, nonlinear microrheology, a Brownian “probe” particle is driven through a complex fluid an...
The motion of a single Brownian probe particle subjected to a constant external body force and immer...
The motion of a single Brownian probe particle subjected to a constant external body force and immer...
We theoretically study the impact of particle roughness, temperature, and hydrodynamic interactions ...
We study the fluctuating motion of a Brownian-sized probe particle as it is dragged by a constant ex...
We investigate active particle-tracking microrheology in a colloidal dispersion by Brownian dynamics...
We investigate active particle-tracking microrheology in a colloidal dispersion by Brownian dynamics...
We investigate active particle-tracking microrheology in a colloidal dispersion by Brownian dynamics...
We study the strongly nonlinear flow behavior of a sticky colloidal dispersion via active microrheol...
The rheological properties of active suspensions are studied via microrheology: tracking the motion ...
Viscoelastic media belong to our everyday live and are highly relevant in different fields like medi...
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...
Complex fluids are present in a multitude of forms: polymers, foods, paints, inks, biological materi...
The motion of a single Brownian particle in a complex fluid can reveal material behavior both at and...
In active, nonlinear microrheology, a Brownian “probe” particle is driven through a complex fluid an...
The motion of a single Brownian probe particle subjected to a constant external body force and immer...
The motion of a single Brownian probe particle subjected to a constant external body force and immer...
We theoretically study the impact of particle roughness, temperature, and hydrodynamic interactions ...
We study the fluctuating motion of a Brownian-sized probe particle as it is dragged by a constant ex...
We investigate active particle-tracking microrheology in a colloidal dispersion by Brownian dynamics...
We investigate active particle-tracking microrheology in a colloidal dispersion by Brownian dynamics...
We investigate active particle-tracking microrheology in a colloidal dispersion by Brownian dynamics...
We study the strongly nonlinear flow behavior of a sticky colloidal dispersion via active microrheol...
The rheological properties of active suspensions are studied via microrheology: tracking the motion ...
Viscoelastic media belong to our everyday live and are highly relevant in different fields like medi...
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...
Complex fluids are present in a multitude of forms: polymers, foods, paints, inks, biological materi...