In soft materials entropic and enthalpic contributions are of similar magnitude and balance each other. Therefore, the macroscopic mechanical and rheological properties and the phase changes are determined to a high degree by thermal motion of the atoms and molecules. Most of the relevant dynamics takes place on mesoscopic length and time scales in between the picosecond atomic scale and the macroscopic frame. Allowing for the proper space time observation window, neutron spin echo (NSE) spectroscopy uniquely allows to address these motions. Here we briefly present some key experimental results on the mesoscopic dynamics of polymer systems, starting from the standard model of polymer motion - the Rouse model. We briefly touch the role of to...
In order to study the mechanisms limiting the topological chain confinement in polymer melts, we hav...
We investigate the collective dynamics of comblike polymers displaying nanosegregation in side group...
Polymer dynamics in the melt state cover a wide range in time and frequency, for both molecular weig...
In soft materials entropic and enthalpic contributions are of similar magnitude and balance each oth...
In polymeric materials, the structures, the macroscopic mechanical and rheological properties, and t...
In soft materials the structures, the macroscopic mechanical and rheological properties and the phas...
This lecture reviews quasielastic small angle neutron scattering experiments exploring the dynamics ...
Neutron spin echo spectroscopy (NSE) provides the unique opportunity to unravel the molecular dynami...
Our understanding of the rich and complex motion of macromolecules has developed rapidly in recent y...
Combining elastic incoherent neutron scattering experiments at different resolutions with molecular ...
The diffusion of compact macromolecules in polymer networks is examined to understand how polymer ne...
© 2018 American Chemical Society. The dynamics of entangled polymer melts not only is of fundamental...
AbstractThe tube model for linear and branched architectures is nowadays able to predict in high pre...
Explains various dynamics effects (diffusion, neutron scattering, viscoelasticity, optical birefring...
Microscopic dynamical events control many of the physical processes at play in condensed matter: tra...
In order to study the mechanisms limiting the topological chain confinement in polymer melts, we hav...
We investigate the collective dynamics of comblike polymers displaying nanosegregation in side group...
Polymer dynamics in the melt state cover a wide range in time and frequency, for both molecular weig...
In soft materials entropic and enthalpic contributions are of similar magnitude and balance each oth...
In polymeric materials, the structures, the macroscopic mechanical and rheological properties, and t...
In soft materials the structures, the macroscopic mechanical and rheological properties and the phas...
This lecture reviews quasielastic small angle neutron scattering experiments exploring the dynamics ...
Neutron spin echo spectroscopy (NSE) provides the unique opportunity to unravel the molecular dynami...
Our understanding of the rich and complex motion of macromolecules has developed rapidly in recent y...
Combining elastic incoherent neutron scattering experiments at different resolutions with molecular ...
The diffusion of compact macromolecules in polymer networks is examined to understand how polymer ne...
© 2018 American Chemical Society. The dynamics of entangled polymer melts not only is of fundamental...
AbstractThe tube model for linear and branched architectures is nowadays able to predict in high pre...
Explains various dynamics effects (diffusion, neutron scattering, viscoelasticity, optical birefring...
Microscopic dynamical events control many of the physical processes at play in condensed matter: tra...
In order to study the mechanisms limiting the topological chain confinement in polymer melts, we hav...
We investigate the collective dynamics of comblike polymers displaying nanosegregation in side group...
Polymer dynamics in the melt state cover a wide range in time and frequency, for both molecular weig...