T4 DNA semi-dilute entangled solutions submitted to high shear rates show a region of weak dependence of the steady-state shear stress on the shear rate. For the highest concentration studied, this region extends over two decades of shear rate, and a plateau of shear stress is observed over one decade. The concentration dependence of the lower boundary of this region scales as the reciprocal of the disengagement time. The concentration dependence of the upper boundary is compatible with the scaling of the reciprocal of the Rouse relaxation time of the entire chain in its tube
International audienceThe dynamics of single DNA molecules conveyed in a viscoelastic fluid flow wit...
We have investigated the recovery of the overshoot in the transient viscosity, the first normal stre...
Previous experiments in polymer rheology have produced monotonic relationships between the imposed s...
Abstract. { T4 DNA semi-dilute entangled solutions submitted to high shear rates show a region of we...
We observed the diffusive motion of a micron-sized bead in an entangled-DNA solution to investigate ...
ABSTRACT: We present the direct visualizations of single, entangled DNA polymers in three flow exper...
Entangled aqueous DNA solutions are ideal as a model system to examine nonlinear flow features inclu...
We study an ideal entanglement network to test a number of emerging ideas about how topological enta...
Entangled DNA solutions are ideal as a model system to examine nonlinear shear flow behavior. Even w...
Single molecule experiments were performed on DNA, a model polymer, and entangled DNA networks to ex...
In this study we have carried out a combination of rheometric and particle-tracking velocimetric (PT...
We have carried out controlled-stress experiments in addition to the conventional controlled-rate me...
We apply a recently developed particle-tracking velocimetric (PTV) method along with conventional rh...
We have studied nonlinear flow behavior of entangled DNA solutions using particle tracking velocimet...
We have investigated the dynamics of dilute (1025C*) and semidilute ( < 6C*) DNA solutions both i...
International audienceThe dynamics of single DNA molecules conveyed in a viscoelastic fluid flow wit...
We have investigated the recovery of the overshoot in the transient viscosity, the first normal stre...
Previous experiments in polymer rheology have produced monotonic relationships between the imposed s...
Abstract. { T4 DNA semi-dilute entangled solutions submitted to high shear rates show a region of we...
We observed the diffusive motion of a micron-sized bead in an entangled-DNA solution to investigate ...
ABSTRACT: We present the direct visualizations of single, entangled DNA polymers in three flow exper...
Entangled aqueous DNA solutions are ideal as a model system to examine nonlinear flow features inclu...
We study an ideal entanglement network to test a number of emerging ideas about how topological enta...
Entangled DNA solutions are ideal as a model system to examine nonlinear shear flow behavior. Even w...
Single molecule experiments were performed on DNA, a model polymer, and entangled DNA networks to ex...
In this study we have carried out a combination of rheometric and particle-tracking velocimetric (PT...
We have carried out controlled-stress experiments in addition to the conventional controlled-rate me...
We apply a recently developed particle-tracking velocimetric (PTV) method along with conventional rh...
We have studied nonlinear flow behavior of entangled DNA solutions using particle tracking velocimet...
We have investigated the dynamics of dilute (1025C*) and semidilute ( < 6C*) DNA solutions both i...
International audienceThe dynamics of single DNA molecules conveyed in a viscoelastic fluid flow wit...
We have investigated the recovery of the overshoot in the transient viscosity, the first normal stre...
Previous experiments in polymer rheology have produced monotonic relationships between the imposed s...