We measure the mobility of nanoparticles at low concentrations in non-Newtonian semidilute aqueous solutions of high-molecular-weight polyelectrolyte polymers. Using optical microscopy and particle tracking algorithms, we image and track hydrophilic polystyrene nanoparticles of diameter 400 nm moving in aqueous solutions of partially hydrolyzed polyacrylamide of molecular weight 8 000 000 Da and concentration of 0.0424.2 g/L. The effective diffusivity of the nanoparticles in the semidilute polymer solutions, extracted from the long-time limit of the mean-squared displacement using the Stokes–Einstein relation, is greater than that calculated from the zero-shear-rate viscosity measured using bulk rheology. For concentrations <i>c</i> > 0.42...
Soft matter is a subfield of condensed matter physics including systems, such as polymers, colloidal...
Polymer mobility near nanoparticle surfaces has been extensively discussed; however, direct experime...
We study the dynamics of nanoparticles in semidilute solutions of ring and linear polymers using hyb...
The mobility of polystyrene nanoparticles ranging in diameter from 300 nm to 2 μm was measured in di...
Hindered mobility of nanoparticles in complex media is ubiquitous in drug delivery, in processing of...
The transport properties of nanoparticles in complex confined media play a significant role in the p...
Transport of nanoparticles affects applications ranging from targeted drug delivery to enhanced oil ...
Polymer nanocomposites are materials comprising of nanometer-sized particles embedded inside polymer...
\u3cp\u3eIn our studies on particle mobility in polymer solutions, we have investigated and determin...
In our studies on particle mobility in polymer solutions, we have investigated and determined self-d...
In our studies on particle mobility in polymer solutions, we have investigated and determined self-d...
The diffusive dynamics of 100 nm to 400 nm diameter polystyrene nanoparticles dispersed in water wer...
The dynamics of nanoparticles in complex fluids are of great interest for applications in drug deliv...
We use scaling theory to derive the time dependence of the mean-square displacement 〈Δr2〉 of a spher...
The self-diffusion of a single large particle in a fluid is usually described by the classic Stokes–...
Soft matter is a subfield of condensed matter physics including systems, such as polymers, colloidal...
Polymer mobility near nanoparticle surfaces has been extensively discussed; however, direct experime...
We study the dynamics of nanoparticles in semidilute solutions of ring and linear polymers using hyb...
The mobility of polystyrene nanoparticles ranging in diameter from 300 nm to 2 μm was measured in di...
Hindered mobility of nanoparticles in complex media is ubiquitous in drug delivery, in processing of...
The transport properties of nanoparticles in complex confined media play a significant role in the p...
Transport of nanoparticles affects applications ranging from targeted drug delivery to enhanced oil ...
Polymer nanocomposites are materials comprising of nanometer-sized particles embedded inside polymer...
\u3cp\u3eIn our studies on particle mobility in polymer solutions, we have investigated and determin...
In our studies on particle mobility in polymer solutions, we have investigated and determined self-d...
In our studies on particle mobility in polymer solutions, we have investigated and determined self-d...
The diffusive dynamics of 100 nm to 400 nm diameter polystyrene nanoparticles dispersed in water wer...
The dynamics of nanoparticles in complex fluids are of great interest for applications in drug deliv...
We use scaling theory to derive the time dependence of the mean-square displacement 〈Δr2〉 of a spher...
The self-diffusion of a single large particle in a fluid is usually described by the classic Stokes–...
Soft matter is a subfield of condensed matter physics including systems, such as polymers, colloidal...
Polymer mobility near nanoparticle surfaces has been extensively discussed; however, direct experime...
We study the dynamics of nanoparticles in semidilute solutions of ring and linear polymers using hyb...