We discuss how the anomalous increase of the viscosity in colloidal systems with short-range attraction can be related to the formation of long-living clusters. Based on molecular dynamics and Monte Carlo numerical simulations of different models, we propose a similar picture for colloidal gelation at low and intermediate volume fractions. On this basis, we analyze the distinct role played by the formation of long-living bonds and the crowding of the particles in the slow dynamics of attractive colloidal systems
We study colloidal gels formed upon centrifugation of dilute suspensions of spherical colloids (radi...
Under static conditions, the superposition of short-range (e.g. van der Waals) attraction and electr...
Mode coupling theory MCT predicts arrest of colloids in terms of their volume fraction, and the ...
Cluster formation and gelation are studied in a colloidal model system with competing short-range at...
The increase in viscosity that is observed in attractive colloidal systems by varying the temperatur...
The phase behavior of colloids that interact via competing interactions - short-range attraction and...
In this review, we discuss recent advances in the investigation of colloidal systems interacting via...
We study a model in which particles interact with short-ranged attractive and long-ranged repulsive ...
We here discuss the results of three-dimensional Monte Carlo simulations of a minimal lattice model ...
We systematically study the relationship between equilibrium and non-equilibrium phase diagrams of a...
Colloidal gels formed by strongly attractive particles at low particle volume fractions are composed...
We present an approximation scheme to the master kinetic equations for aggregation and gelation with...
The dynamical arrest of attractive colloidal particles into out-of-equilibrium structures, known as ...
We systematically study the relationship between equilibrium and nonequilibrium phase diagrams of a ...
We propose a microscopic framework based on nonequilibrium statistical mechanics to connect the micr...
We study colloidal gels formed upon centrifugation of dilute suspensions of spherical colloids (radi...
Under static conditions, the superposition of short-range (e.g. van der Waals) attraction and electr...
Mode coupling theory MCT predicts arrest of colloids in terms of their volume fraction, and the ...
Cluster formation and gelation are studied in a colloidal model system with competing short-range at...
The increase in viscosity that is observed in attractive colloidal systems by varying the temperatur...
The phase behavior of colloids that interact via competing interactions - short-range attraction and...
In this review, we discuss recent advances in the investigation of colloidal systems interacting via...
We study a model in which particles interact with short-ranged attractive and long-ranged repulsive ...
We here discuss the results of three-dimensional Monte Carlo simulations of a minimal lattice model ...
We systematically study the relationship between equilibrium and non-equilibrium phase diagrams of a...
Colloidal gels formed by strongly attractive particles at low particle volume fractions are composed...
We present an approximation scheme to the master kinetic equations for aggregation and gelation with...
The dynamical arrest of attractive colloidal particles into out-of-equilibrium structures, known as ...
We systematically study the relationship between equilibrium and nonequilibrium phase diagrams of a ...
We propose a microscopic framework based on nonequilibrium statistical mechanics to connect the micr...
We study colloidal gels formed upon centrifugation of dilute suspensions of spherical colloids (radi...
Under static conditions, the superposition of short-range (e.g. van der Waals) attraction and electr...
Mode coupling theory MCT predicts arrest of colloids in terms of their volume fraction, and the ...