Seed particles of elements or compounds which may or may not form alloys are now used extensively in promoting well-controlled nanowire growth. The technology has evolved following the well-known Vapour-Liquid-Solid (VLS) model which was developed over 40 years ago. This model indicates that a liquid alloy is formed from the seed particle and the growth precursor(s), resulting in crystal growth by precipitation from a supersaturated solution. The enhanced growth rate compared to the bulk growth from the vapour is typically attributed to preferential decomposition of precursor materials at or near the particle surface. Recently, however, there has been much interest in further developing this model, which was developed for Au-assisted Si whi...
DoctorOne-dimensional (1-D) nanocrystal synthesis is an interesting picture from fundamental crystal...
A review and expansion of the fundamental processes of the vapor-liquid-solid (VLS) growth mechanism...
Complex nanostructures are becoming increasingly important for the development of nanoscale devices ...
This thesis describes the epitaxial growth of III-V semiconductor nanowires using Au seed particles,...
We use metal - organic vapour phase epitaxy for growth investigations of epitaxial nanowires in III ...
Controllable particle assisted growth (PAG) of III-V nanowires is today almost exclusively done with...
Controllable particle assisted growth (PAG) of III-V nanowires is today almost exclusively done with...
Semiconducting nanowires have attracted scientific attention for more than 20 years due to their pot...
The integration of III-V semiconductors with Si in device fabrication is facilitated by the use of n...
This thesis aims to expand on the fundamental knowledge of crystal growth, selectively focusing on t...
This thesis aims to expand on the fundamental knowledge of crystal growth, selectively focusing on t...
The integration of III–V semiconductors with Si in device fabrication is facilitated by the use of n...
III-V semiconductor nanowires have attracted extensive research interests over the past few decades ...
We report the temperature dependence of the Au-assisted growth of InAs nanowires in MOVPE. Extensive...
III-V semiconductor nanowires have attracted extensive research interests over the past few decades ...
DoctorOne-dimensional (1-D) nanocrystal synthesis is an interesting picture from fundamental crystal...
A review and expansion of the fundamental processes of the vapor-liquid-solid (VLS) growth mechanism...
Complex nanostructures are becoming increasingly important for the development of nanoscale devices ...
This thesis describes the epitaxial growth of III-V semiconductor nanowires using Au seed particles,...
We use metal - organic vapour phase epitaxy for growth investigations of epitaxial nanowires in III ...
Controllable particle assisted growth (PAG) of III-V nanowires is today almost exclusively done with...
Controllable particle assisted growth (PAG) of III-V nanowires is today almost exclusively done with...
Semiconducting nanowires have attracted scientific attention for more than 20 years due to their pot...
The integration of III-V semiconductors with Si in device fabrication is facilitated by the use of n...
This thesis aims to expand on the fundamental knowledge of crystal growth, selectively focusing on t...
This thesis aims to expand on the fundamental knowledge of crystal growth, selectively focusing on t...
The integration of III–V semiconductors with Si in device fabrication is facilitated by the use of n...
III-V semiconductor nanowires have attracted extensive research interests over the past few decades ...
We report the temperature dependence of the Au-assisted growth of InAs nanowires in MOVPE. Extensive...
III-V semiconductor nanowires have attracted extensive research interests over the past few decades ...
DoctorOne-dimensional (1-D) nanocrystal synthesis is an interesting picture from fundamental crystal...
A review and expansion of the fundamental processes of the vapor-liquid-solid (VLS) growth mechanism...
Complex nanostructures are becoming increasingly important for the development of nanoscale devices ...