AbstractA synergy of computer simulations, analytical formulations, and experiments proves very effective in research and development. Using nanorod growth as an example, this letter presents the synergy of the three complementary approaches in research, and demonstrates its effectiveness. Through this synergy, a theoretical framework of nanorod growth emerges; through the direction of the theories, experimental realization of smallest well-separated nanorods becomes reality; through the realization of such nanorods, metallic glue in ambient environments becomes technical reality and commercial possibility
When materials approach the size of few nanometers, they show properties which are significantly dif...
We report the self assembly of nanostructures via. the bottom-up approach by dielectrophoresis. Diel...
ZnO nanostructures have been investigated for quite a long time. However, only recently they trigger...
AbstractA synergy of computer simulations, analytical formulations, and experiments proves very effe...
The transition from nanoscience to nanotechnology is dependent on a level of scientific maturity. Af...
The transition from nanoscience to nanotechnology is dependent on a level of scientific maturity. Af...
The transition from nanoscience to nanotechnology is dependent on a level of scientific maturity. Af...
To move nanotechnology out of the lab and into common use requires understanding and experience of t...
To move nanotechnology out of the lab and into common use requires understanding and experience of t...
Nanorods are nanostructures that are the object of fundamental and applied research. They may be pre...
Metallic nanorods have a wide range of important technological applications. Fabrication of metallic...
Understanding the fundamentals of the growth of nanostructures is key to controlling their size and ...
This work will describe research directed towards the synthesis of anisotropic gold nanoparticles as...
Novel sp. (sup 3) rich diamond-like carbon (DLC) nanorod films were fabricated by hot filament chemi...
The accomplishments of this project include three elements. The first element directly relates to th...
When materials approach the size of few nanometers, they show properties which are significantly dif...
We report the self assembly of nanostructures via. the bottom-up approach by dielectrophoresis. Diel...
ZnO nanostructures have been investigated for quite a long time. However, only recently they trigger...
AbstractA synergy of computer simulations, analytical formulations, and experiments proves very effe...
The transition from nanoscience to nanotechnology is dependent on a level of scientific maturity. Af...
The transition from nanoscience to nanotechnology is dependent on a level of scientific maturity. Af...
The transition from nanoscience to nanotechnology is dependent on a level of scientific maturity. Af...
To move nanotechnology out of the lab and into common use requires understanding and experience of t...
To move nanotechnology out of the lab and into common use requires understanding and experience of t...
Nanorods are nanostructures that are the object of fundamental and applied research. They may be pre...
Metallic nanorods have a wide range of important technological applications. Fabrication of metallic...
Understanding the fundamentals of the growth of nanostructures is key to controlling their size and ...
This work will describe research directed towards the synthesis of anisotropic gold nanoparticles as...
Novel sp. (sup 3) rich diamond-like carbon (DLC) nanorod films were fabricated by hot filament chemi...
The accomplishments of this project include three elements. The first element directly relates to th...
When materials approach the size of few nanometers, they show properties which are significantly dif...
We report the self assembly of nanostructures via. the bottom-up approach by dielectrophoresis. Diel...
ZnO nanostructures have been investigated for quite a long time. However, only recently they trigger...