Despite significant advances in the synthesis of nanostructures, our understanding of the growth mechanisms of nanowires and nanotubes grown from catalyst particles remains limited. In this study we demonstrate a straightforward route to grow coaxial amorphous B/BOx nanowires and BOx nanotubes using gold catalyst particles inside a transmission electron microscope at room temperature without the need of any specialized or expensive accessories. Exceedingly high growth rates (over 7 μm/min) are found for the coaxial nanowires, and this is attributed to the highly efficient diffusion of B species along the surface of a nanowire by electrostatic repulsion. On the other hand the O species are shown to be relevant to activate the gold catalysts,...
We have investigated the growth of GaAs nanowires as a function of temperatures and source pressures...
We use metal - organic vapour phase epitaxy for growth investigations of epitaxial nanowires in III ...
Semiconductor nanowires offer the opportunity to incorporate novel structures and functionality into...
Despite significant advances in the synthesis of nanostructures, our understanding of the growth mec...
Pursuing the development and implementation of novel synthesis techniques to produce nanostructures ...
Although ultrathin Au nanowires (similar to 2 nm diameter) are expected to demonstrate several inter...
Gold nanowires have great potential use as interconnects in electronic, photonic, and optoelectronic...
Although ultrathin Au nanowires (∼2 nm diameter) are expected to demonstrate several interesting pro...
Semiconductor nanowires are studied by using transmission electron microscopy (TEM) based methods in...
Semiconductor nanowires are key building blocks for the next generation of light-emitting diodes, so...
Understanding the mechanisms behind crystal nucleation and growth is a fundamental requirement for t...
In situ observations during vapor–liquid–solid (VLS) growth of semiconductor nanowires in the chambe...
This thesis focuses on the development and application of a new type of nanowire growth where ultrat...
We report a nanowire growth that is highly unconventional: (1) nanowires can grow from substrate-bou...
Although ultrathin Au nanowires (∼2 nm diameter) are expected to demonstrate several interesting pro...
We have investigated the growth of GaAs nanowires as a function of temperatures and source pressures...
We use metal - organic vapour phase epitaxy for growth investigations of epitaxial nanowires in III ...
Semiconductor nanowires offer the opportunity to incorporate novel structures and functionality into...
Despite significant advances in the synthesis of nanostructures, our understanding of the growth mec...
Pursuing the development and implementation of novel synthesis techniques to produce nanostructures ...
Although ultrathin Au nanowires (similar to 2 nm diameter) are expected to demonstrate several inter...
Gold nanowires have great potential use as interconnects in electronic, photonic, and optoelectronic...
Although ultrathin Au nanowires (∼2 nm diameter) are expected to demonstrate several interesting pro...
Semiconductor nanowires are studied by using transmission electron microscopy (TEM) based methods in...
Semiconductor nanowires are key building blocks for the next generation of light-emitting diodes, so...
Understanding the mechanisms behind crystal nucleation and growth is a fundamental requirement for t...
In situ observations during vapor–liquid–solid (VLS) growth of semiconductor nanowires in the chambe...
This thesis focuses on the development and application of a new type of nanowire growth where ultrat...
We report a nanowire growth that is highly unconventional: (1) nanowires can grow from substrate-bou...
Although ultrathin Au nanowires (∼2 nm diameter) are expected to demonstrate several interesting pro...
We have investigated the growth of GaAs nanowires as a function of temperatures and source pressures...
We use metal - organic vapour phase epitaxy for growth investigations of epitaxial nanowires in III ...
Semiconductor nanowires offer the opportunity to incorporate novel structures and functionality into...