Applying an electric field to polarisable colloidal particles, whose permittivity differs from that of the dispersing medium, generates induced dipoles that promote the formation of string-like clusters and ultimately alter the fluid mechanical and rheological properties. Complex systems of this kind, whose electric-field-induced rheology can be manipulated between that of viscous and elastic materials, are referred to as electrorheological fluids. By dynamic Monte Carlo simulations, we investigate the dynamics of self-assembly of dielectric nanocubes upon application of an electric field. Switching the field on induces in-particle dipoles and, at sufficiently large field intensity, leads to string-like clusters of variable length across a ...
Electrorheological fluids consist of a colloidal suspension of dielectric particles in a continuous ...
This dissertation aims to study the forces that drive self-assembly in binary mixtures of particles ...
This dissertation aims to study the forces that drive self-assembly in binary mixtures of particles ...
Applying an electric field to polarisable colloidal particles, whose permittivity differs from that ...
Brownian dynamics (BD) simulations based on a novel Langevin integrator algorithm are used to simula...
We report a systematic study of the dynamics of chain formation in electrorheological fluids using B...
Electrokinetic phenomena have been widely used in microfluidic devices as a means of manipulating fl...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2019Catal...
A molecular-dynamics-like method is presented for the simulation of a suspension of dielectric parti...
A suspension of dielectric particles rotating spontaneously when subjected to a DC electric field in...
Electrokinetic phenomena have been widely used in microfluidic devices as a means of manipulating fl...
A suspension of dielectric particles rotating spontaneously when subjected to a DC electric field in...
A suspension of dielectric particles rotating spontaneously when subjected to a DC electric field in...
N-isopropyl poly acrylamide microgel colloids exhibit strong electric-field-induced phase transition...
The properties of suspensions of fine particles in dielectric liquid (electrorheological fluids) sub...
Electrorheological fluids consist of a colloidal suspension of dielectric particles in a continuous ...
This dissertation aims to study the forces that drive self-assembly in binary mixtures of particles ...
This dissertation aims to study the forces that drive self-assembly in binary mixtures of particles ...
Applying an electric field to polarisable colloidal particles, whose permittivity differs from that ...
Brownian dynamics (BD) simulations based on a novel Langevin integrator algorithm are used to simula...
We report a systematic study of the dynamics of chain formation in electrorheological fluids using B...
Electrokinetic phenomena have been widely used in microfluidic devices as a means of manipulating fl...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2019Catal...
A molecular-dynamics-like method is presented for the simulation of a suspension of dielectric parti...
A suspension of dielectric particles rotating spontaneously when subjected to a DC electric field in...
Electrokinetic phenomena have been widely used in microfluidic devices as a means of manipulating fl...
A suspension of dielectric particles rotating spontaneously when subjected to a DC electric field in...
A suspension of dielectric particles rotating spontaneously when subjected to a DC electric field in...
N-isopropyl poly acrylamide microgel colloids exhibit strong electric-field-induced phase transition...
The properties of suspensions of fine particles in dielectric liquid (electrorheological fluids) sub...
Electrorheological fluids consist of a colloidal suspension of dielectric particles in a continuous ...
This dissertation aims to study the forces that drive self-assembly in binary mixtures of particles ...
This dissertation aims to study the forces that drive self-assembly in binary mixtures of particles ...