The controlled patterning of anisotropic gold nanoparticles is of crucial importance for many applications related to their optical properties. In this paper, we report that gold nanorods prepared by a seed-mediated synthesis protocol (without any further functionalization) can be selectively deposited on hydrophilic parts of hydrophobic–hydrophilic contrast patterned substrates. We have seen that, when nanorods with lengths much smaller than the width of the hydrophilic stripe are used, they disperse on these stripes with random orientation and tunable uniform particle separation. However, for nanorods having lengths comparable to the width of the hydrophilic stripes, confinement-induced alignment occurs. We observe that different interact...
For nearly two decades, the unique size- and shape-dependent optical properties of gold nanorods (Au...
bS Supporting Information Metallic nanoparticles have been the subject of intenseresearch because of...
The integration of nanoparticle superstructures into daily life applications faces major challenges ...
The controlled patterning of anisotropic gold nanoparticles is of crucial importance for many applic...
The synergy of self- and directed-assembly processes and lithography provides intriguing avenues to ...
The synergy of self- and directed-assembly processes and lithography provides intriguing avenues to ...
Controlling the alignment and orientation of nanorods on various surfaces poses major challenges. In...
Experimentally we explore the potential of using pre-defined motion of a receding contact line to co...
The main objective of this thesis was to develop a fabrication method combining bottom-up and top-do...
Gold nanorods are of great interest in many areas of science and technology due to their versatility...
For nearly two decades, the unique size- and shape-dependent optical properties of gold nanorods (Au...
Two-dimensional or three-dimensional highly ordered arrays of anisotropic nanoparticles provide attr...
We show that the crystal structure of a substrate can be exploited to drive the anisotropic assembly...
We show that the crystal structure of a substrate can be exploited to drive the anisotropic assembly...
Approaches are needed for the tailored assembly of plasmonic building blocks on the surface of subst...
For nearly two decades, the unique size- and shape-dependent optical properties of gold nanorods (Au...
bS Supporting Information Metallic nanoparticles have been the subject of intenseresearch because of...
The integration of nanoparticle superstructures into daily life applications faces major challenges ...
The controlled patterning of anisotropic gold nanoparticles is of crucial importance for many applic...
The synergy of self- and directed-assembly processes and lithography provides intriguing avenues to ...
The synergy of self- and directed-assembly processes and lithography provides intriguing avenues to ...
Controlling the alignment and orientation of nanorods on various surfaces poses major challenges. In...
Experimentally we explore the potential of using pre-defined motion of a receding contact line to co...
The main objective of this thesis was to develop a fabrication method combining bottom-up and top-do...
Gold nanorods are of great interest in many areas of science and technology due to their versatility...
For nearly two decades, the unique size- and shape-dependent optical properties of gold nanorods (Au...
Two-dimensional or three-dimensional highly ordered arrays of anisotropic nanoparticles provide attr...
We show that the crystal structure of a substrate can be exploited to drive the anisotropic assembly...
We show that the crystal structure of a substrate can be exploited to drive the anisotropic assembly...
Approaches are needed for the tailored assembly of plasmonic building blocks on the surface of subst...
For nearly two decades, the unique size- and shape-dependent optical properties of gold nanorods (Au...
bS Supporting Information Metallic nanoparticles have been the subject of intenseresearch because of...
The integration of nanoparticle superstructures into daily life applications faces major challenges ...