Self-assembly of nanoparticles is one of the most promising methods for the preparation of novel materials and devices with exceptional properties. In order to control nanoparticles self-assembly, an understanding of their interactions is absolutely necessary. One convenient way to achieve a control on their interaction is through the use of external fields. Here we provide two different examples of how interparticle interactions are affected by interactions with external fields. In the first case, magnetic fields are used to induce dipolar interactions among concentrated suspension of superparamagnetic nanocolloids, which cause them to self-assemble into dense chain-like anisotropic structures, used as templates for the growth of porous ...
Nanoparticles can be used as building blocks of materials. Properties of such materials depend on th...
Determining and implementing strategies to control self-assembling colloidal systems is a problem ...
The anisotropy of dipolar interactions can sometimes be a hindrance when assembling colloids, as it ...
Field-directed self-assembly (DSA) has recently moved into the focus of the soft-matter and nanotech...
During the last decade the focus in colloid science on selfassembly has moved from mostly spherical ...
Particle dispersions provide a promising tool for the engineering of functional materials that explo...
During the last decade the focus in colloid science on selfassembly has moved from mostly spherical ...
During the last decade the focus in colloid science on selfassembly has moved from mostly spherical ...
During the last decade the focus in colloid science on self-assembly has moved from mostly spherical...
Self-organisation is the key route for assembling colloidal particles into well-defined structures. ...
Directed self-assembly of nanoparticles (NPs) is a promising strategy for bottom-up fabrication of n...
Abstract. We use Monte Carlo and quaternion molecular dynamics simulations to study the self-assembl...
International audienceRecent experimental results using in particular small-angle scattering to char...
Using Langevin dynamics simulations, we investigate the self-assembly of magnetic nanogels in the pr...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2019Catal...
Nanoparticles can be used as building blocks of materials. Properties of such materials depend on th...
Determining and implementing strategies to control self-assembling colloidal systems is a problem ...
The anisotropy of dipolar interactions can sometimes be a hindrance when assembling colloids, as it ...
Field-directed self-assembly (DSA) has recently moved into the focus of the soft-matter and nanotech...
During the last decade the focus in colloid science on selfassembly has moved from mostly spherical ...
Particle dispersions provide a promising tool for the engineering of functional materials that explo...
During the last decade the focus in colloid science on selfassembly has moved from mostly spherical ...
During the last decade the focus in colloid science on selfassembly has moved from mostly spherical ...
During the last decade the focus in colloid science on self-assembly has moved from mostly spherical...
Self-organisation is the key route for assembling colloidal particles into well-defined structures. ...
Directed self-assembly of nanoparticles (NPs) is a promising strategy for bottom-up fabrication of n...
Abstract. We use Monte Carlo and quaternion molecular dynamics simulations to study the self-assembl...
International audienceRecent experimental results using in particular small-angle scattering to char...
Using Langevin dynamics simulations, we investigate the self-assembly of magnetic nanogels in the pr...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2019Catal...
Nanoparticles can be used as building blocks of materials. Properties of such materials depend on th...
Determining and implementing strategies to control self-assembling colloidal systems is a problem ...
The anisotropy of dipolar interactions can sometimes be a hindrance when assembling colloids, as it ...