A simple and predictive model is put forward explaining the experimentally observed substantial shift of the glass transition temperature, T g, of sufficiently thin polymer films. It focuses on the limit of small molecular weight, where geometrical `finite size' effects on the chain conformation can be ruled out. The model is based on the idea that the polymer freezes due to memory effects in the viscoelastic eigenmodes of the film, which are affected by the proximity of the boundaries. The elastic modulus of the polymer at the glass transition turns out to be the only fitting parameter. Quantitative agreement is obtained with our experimental results on short chain polystyrene (M W = 2 kg/mol), as well as with earlier results obtained with...
Most polymers solidify into a glassy amorphous state, accompanied by a rapid increase in the viscosi...
Freely standing polystyrene films show an anomalous drop of the glass temperature $T_\ab{g}$ when th...
Understanding the mechanical properties of polymers at the nanoscale is critical in numerous emergin...
A simple and predictive model is put forward explaining the experimentally observed substantial shif...
A simple and predictive model is put forward explaining the experimentally observed substantial shif...
This chapter reviews the recent experiments involving the dynamics of polymer films with thickness c...
Glass transition behavior of nanoscopically thin polymer films is investigated by means of molecular...
In this paper the glass transition temperature (Tg) in thin polymer films has been studied. Ellipsom...
It is discussed how the proximity of a free surface or mobile interface may affect the strain relaxa...
Over the past twenty years experiments performed on thin polymer films deposited on substrates have ...
International audienceA model for the dynamics of non-polar polymers close to the glass transition, ...
Monodispersed polystyrene with different molecular weights, M-w, from below the entanglement molecul...
We have measured, the thickness dependence of the glass transition temperature $T_{\rm g}(h)$, usin...
Abstract. In this paper we present a new analysis of data on the reduced glass transitions observed ...
I present some tentative ideas on the possibility of plastic deformation which might be relevant in ...
Most polymers solidify into a glassy amorphous state, accompanied by a rapid increase in the viscosi...
Freely standing polystyrene films show an anomalous drop of the glass temperature $T_\ab{g}$ when th...
Understanding the mechanical properties of polymers at the nanoscale is critical in numerous emergin...
A simple and predictive model is put forward explaining the experimentally observed substantial shif...
A simple and predictive model is put forward explaining the experimentally observed substantial shif...
This chapter reviews the recent experiments involving the dynamics of polymer films with thickness c...
Glass transition behavior of nanoscopically thin polymer films is investigated by means of molecular...
In this paper the glass transition temperature (Tg) in thin polymer films has been studied. Ellipsom...
It is discussed how the proximity of a free surface or mobile interface may affect the strain relaxa...
Over the past twenty years experiments performed on thin polymer films deposited on substrates have ...
International audienceA model for the dynamics of non-polar polymers close to the glass transition, ...
Monodispersed polystyrene with different molecular weights, M-w, from below the entanglement molecul...
We have measured, the thickness dependence of the glass transition temperature $T_{\rm g}(h)$, usin...
Abstract. In this paper we present a new analysis of data on the reduced glass transitions observed ...
I present some tentative ideas on the possibility of plastic deformation which might be relevant in ...
Most polymers solidify into a glassy amorphous state, accompanied by a rapid increase in the viscosi...
Freely standing polystyrene films show an anomalous drop of the glass temperature $T_\ab{g}$ when th...
Understanding the mechanical properties of polymers at the nanoscale is critical in numerous emergin...