The glass transition in binary mixtures of star polymers is studied by mode coupling theory and extensive Molecular dynamics computer simulations. In particular, we have explored vitrification ill the parameter space of size asymmetry delta and concentration rho(2) of the small star polymers at fixed concentration of the large ones. Depending on the choice of parameters, three different glassy states are identified: a single glass of big polymers at low delta and low rho(2), a double glass at high delta and low rho(2), and a novel double glass at high rho(2) and high delta which is characterized by a strong localization of the small particles. At low delta and high rho(2) there is a competition between vitrification and phase separation. Ce...
We present extensive experimental and theoretical investigations on the structure, phase behavior, d...
We study the influence of composition changes on the glass transition of binary hard disk and hard s...
We examine the demixing transition in star-polymer-colloid mixtures for star arm numbers f = 2,6,16,...
Additional resources and features associated with this article are available within the HTML version...
We examine the vitrification and melting of asymmetric star polymer mixtures by combining rheologica...
Colloidal glass transition and its manipulation represent a topic of ever increasing scientific inte...
Simulations and mode-coupling theory calculations, for a large range of the arm number f and packing...
We examine the rheological transition from an arrested to a fluid state for different mixtures of st...
We present experimental evidence confirming the recently established rich dynamic state diagram of a...
Abstract We examine the rheological transition from an arrested to a fluid state for different mixtu...
We study dynamically highly asymmetric binary mixtures comprised of small methyl tetrahydrofuran (MT...
Colloid-polymer mixtures exhibit a rich phase behavior including reentrance of the liquid-glass tran...
By employing rheological experiments, mode coupling theory, and computer simulations based on realis...
Abstract We examine the rheological transition from an arrested to a fluid state for different mixtu...
This thesis studies the glassy slowdown in binary mixtures. We investigate the role of concentration...
We present extensive experimental and theoretical investigations on the structure, phase behavior, d...
We study the influence of composition changes on the glass transition of binary hard disk and hard s...
We examine the demixing transition in star-polymer-colloid mixtures for star arm numbers f = 2,6,16,...
Additional resources and features associated with this article are available within the HTML version...
We examine the vitrification and melting of asymmetric star polymer mixtures by combining rheologica...
Colloidal glass transition and its manipulation represent a topic of ever increasing scientific inte...
Simulations and mode-coupling theory calculations, for a large range of the arm number f and packing...
We examine the rheological transition from an arrested to a fluid state for different mixtures of st...
We present experimental evidence confirming the recently established rich dynamic state diagram of a...
Abstract We examine the rheological transition from an arrested to a fluid state for different mixtu...
We study dynamically highly asymmetric binary mixtures comprised of small methyl tetrahydrofuran (MT...
Colloid-polymer mixtures exhibit a rich phase behavior including reentrance of the liquid-glass tran...
By employing rheological experiments, mode coupling theory, and computer simulations based on realis...
Abstract We examine the rheological transition from an arrested to a fluid state for different mixtu...
This thesis studies the glassy slowdown in binary mixtures. We investigate the role of concentration...
We present extensive experimental and theoretical investigations on the structure, phase behavior, d...
We study the influence of composition changes on the glass transition of binary hard disk and hard s...
We examine the demixing transition in star-polymer-colloid mixtures for star arm numbers f = 2,6,16,...