We report on self-assembled nanodisc formations of silica nanoparticles on a surface modified silicon substrate using modified Langmuir-Schafer deposition technique (stamping). The size, inter-particle separation as well as the packing of the silica nanoparticles within the nanodiscs formed spontaneously can be tuned by the surface pressure applied on the water surface. We obtain self-assembled nanodiscs of silica nanoparticle arranged in a hexagonal symmetry. We also observe that by varying the surface pressure of deposition at the water-molecule-air interface we obtain such 2D disc-shaped structure with varying sizes and a packing ratio of the silica nanoparticl
[[abstract]]This study demonstrate assembly of mesoporous silica nanoparticles (MSNs) into various p...
[[abstract]]This study demonstrate assembly of mesoporous silica nanoparticles (MSNs) into various p...
4Fascinating packing patterns of identical spherical and discotic objects on curved surfaces occur r...
Two-dimensional silica nanoparticle assemblies were obtained by deposition of bubble made from a sur...
Key words: silica, nanoparticles, monolayer, capillary coater, self-assembly, zeta potential, DLVO f...
By exploring the phenomenon of water diffusion induced self-assembly of silica particle in microflui...
A template-free, single-precursor method is presented for constructing hydrophobic silica nanopartic...
Patterned organosilane self-assembled monolayers serve as molecular platforms for electronic, optica...
The flexible control of nanopatterns by a bottom-up process at the nanometer scale is essential for ...
A template-free, single-precursor method is presented for constructing hydrophobic silica nanopartic...
The self-assembling properties of surfactant can be used to direct the organization of nanoparticles...
Two-dimensional assemblies of colloidal gold nanoparticles were deposited via electrostatic self-ass...
In this paper, we present an alternative approach for controlled nanoparticle organization on a soli...
We report about a maskless technique to deposit colloidal polystyrene particles in patterned stripes...
[[abstract]]This study demonstrate assembly of mesoporous silica nanoparticles (MSNs) into various p...
[[abstract]]This study demonstrate assembly of mesoporous silica nanoparticles (MSNs) into various p...
[[abstract]]This study demonstrate assembly of mesoporous silica nanoparticles (MSNs) into various p...
4Fascinating packing patterns of identical spherical and discotic objects on curved surfaces occur r...
Two-dimensional silica nanoparticle assemblies were obtained by deposition of bubble made from a sur...
Key words: silica, nanoparticles, monolayer, capillary coater, self-assembly, zeta potential, DLVO f...
By exploring the phenomenon of water diffusion induced self-assembly of silica particle in microflui...
A template-free, single-precursor method is presented for constructing hydrophobic silica nanopartic...
Patterned organosilane self-assembled monolayers serve as molecular platforms for electronic, optica...
The flexible control of nanopatterns by a bottom-up process at the nanometer scale is essential for ...
A template-free, single-precursor method is presented for constructing hydrophobic silica nanopartic...
The self-assembling properties of surfactant can be used to direct the organization of nanoparticles...
Two-dimensional assemblies of colloidal gold nanoparticles were deposited via electrostatic self-ass...
In this paper, we present an alternative approach for controlled nanoparticle organization on a soli...
We report about a maskless technique to deposit colloidal polystyrene particles in patterned stripes...
[[abstract]]This study demonstrate assembly of mesoporous silica nanoparticles (MSNs) into various p...
[[abstract]]This study demonstrate assembly of mesoporous silica nanoparticles (MSNs) into various p...
[[abstract]]This study demonstrate assembly of mesoporous silica nanoparticles (MSNs) into various p...
4Fascinating packing patterns of identical spherical and discotic objects on curved surfaces occur r...