From PubMed via Jisc Publications RouterHistory: received 2021-04-27, revised 2021-07-14, accepted 2021-07-16Publication status: aheadofprintUnderstanding the rheology of colloidal suspensions is crucial in the formulation of a wide selection of industry-relevant products, such as paints, foods and inks. To characterise the viscoelastic behaviour of these soft materials, one can analyse the microscopic dynamics of colloidal tracers diffusing through the host fluid and generating local deformations and stresses. This technique, referred to as microrheology, links the bulk rheology of fluids to the microscopic dynamics at the particle scale. If tracers are subjected to external forces, rather than freely diffusing, it is called active microrh...
Particle tracking in soft materials allows one to characterise the material’s local viscoelastic res...
We present experiments and computer simulations of a “tracer” (or “probe”) particle trapped with opt...
The length and time scales accessible to optical tweezers make them an ideal tool for the examinatio...
By performing dynamic Monte Carlo simulations, we investigate the microrheology of isotropic suspens...
Microrheology was proposed almost twenty years ago as a technique to obtain rheological properties i...
In this work, we have investigated active and nonlinear microrheology of dense colloidal suspensions...
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...
In active microrheology, a strong external force is applied to a colloidal probe immersed in a compl...
We analyze the nonlinear active microrheology of dense colloidal suspensions using a schematic model...
We analyze the nonlinear active microrheology of dense colloidal suspensions using a schematic model...
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 ...
We present a first-principles theory for the active nonlinear microrheology of colloidal model syste...
Particle tracking in soft materials allows one to characterise the material’s local viscoelastic res...
We present experiments and computer simulations of a “tracer” (or “probe”) particle trapped with opt...
The length and time scales accessible to optical tweezers make them an ideal tool for the examinatio...
By performing dynamic Monte Carlo simulations, we investigate the microrheology of isotropic suspens...
Microrheology was proposed almost twenty years ago as a technique to obtain rheological properties i...
In this work, we have investigated active and nonlinear microrheology of dense colloidal suspensions...
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...
In active microrheology, a strong external force is applied to a colloidal probe immersed in a compl...
We analyze the nonlinear active microrheology of dense colloidal suspensions using a schematic model...
We analyze the nonlinear active microrheology of dense colloidal suspensions using a schematic model...
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 ...
We present a first-principles theory for the active nonlinear microrheology of colloidal model syste...
Particle tracking in soft materials allows one to characterise the material’s local viscoelastic res...
We present experiments and computer simulations of a “tracer” (or “probe”) particle trapped with opt...
The length and time scales accessible to optical tweezers make them an ideal tool for the examinatio...