We examine the rheological transition from an arrested to a fluid state for different mixtures of star polymers with varying functionality and size ratios. As a general trend, we find that addition of smaller star polymers in an arrested, concentrated solution of larger ones brings about melting of the large star glass. At the same time, the dependence of the amount of additives needed to melt the glass has a nontrivial dependence on the size ratio. Theoretical analysis, based on effective interactions and Mode Coupling Theory, reproduces the experimental results and helps identify two distinct types of glasses in the composite system. © Springer-Verlag 2006
PACS. 61.20.-p – Structure of liquids. Abstract. – We examine the phase behavior of star-polymer–col...
We review recent progress achieved in the theoretical description of the interactions, correlations,...
Colloid-polymer mixtures exhibit a rich phase behavior including reentrance of the liquid-glass tran...
Abstract We examine the rheological transition from an arrested to a fluid state for different mixtu...
Abstract We examine the rheological transition from an arrested to a fluid state for different mixtu...
By employing rheological experiments, mode coupling theory, and computer simulations based on realis...
We examine the vitrification and melting of asymmetric star polymer mixtures by combining rheologica...
We present experimental evidence confirming the recently established rich dynamic state diagram of a...
We present extensive experimental and theoretical investigations on the structure, phase behavior, d...
Colloidal glass transition and its manipulation represent a topic of ever increasing scientific inte...
The glass transition in binary mixtures of star polymers is studied by mode coupling theory and exte...
We consider various scenarios leading to molecular control of the rheological state of concentrated ...
© 2013 American Physical Society, available at: Truzzolillo, D., Marzi, D., Marakis, J., Capone, B.,...
At high packing fractions, colloidal suspensions are yield stress materials that are characterized b...
The dynamics of colloidal star —linear homopolymer mixtures is investigated by photon correlation sp...
PACS. 61.20.-p – Structure of liquids. Abstract. – We examine the phase behavior of star-polymer–col...
We review recent progress achieved in the theoretical description of the interactions, correlations,...
Colloid-polymer mixtures exhibit a rich phase behavior including reentrance of the liquid-glass tran...
Abstract We examine the rheological transition from an arrested to a fluid state for different mixtu...
Abstract We examine the rheological transition from an arrested to a fluid state for different mixtu...
By employing rheological experiments, mode coupling theory, and computer simulations based on realis...
We examine the vitrification and melting of asymmetric star polymer mixtures by combining rheologica...
We present experimental evidence confirming the recently established rich dynamic state diagram of a...
We present extensive experimental and theoretical investigations on the structure, phase behavior, d...
Colloidal glass transition and its manipulation represent a topic of ever increasing scientific inte...
The glass transition in binary mixtures of star polymers is studied by mode coupling theory and exte...
We consider various scenarios leading to molecular control of the rheological state of concentrated ...
© 2013 American Physical Society, available at: Truzzolillo, D., Marzi, D., Marakis, J., Capone, B.,...
At high packing fractions, colloidal suspensions are yield stress materials that are characterized b...
The dynamics of colloidal star —linear homopolymer mixtures is investigated by photon correlation sp...
PACS. 61.20.-p – Structure of liquids. Abstract. – We examine the phase behavior of star-polymer–col...
We review recent progress achieved in the theoretical description of the interactions, correlations,...
Colloid-polymer mixtures exhibit a rich phase behavior including reentrance of the liquid-glass tran...