We report on structural, compositional, and thermal characterization of self-assembled in-plane epitaxial Si1-xGex alloy nanowires grown by molecular beam epitaxy on Si (001) substrates. The thermal properties were studied by means of scanning thermal microscopy, while the microstructural characteristics, the spatial distribution of the elemental composition of the alloy nanowires and the sample surface were investigated by transmission electron microscopy and energy dispersive x-ray microanalysis. We provide new insights regarding the morphology of the in-plane nanostructures, their size-dependent gradient chemical composition, and the formation of a 5 nm thick wetting layer on the Si substrate surface. In addition, we directly probe heat ...
Low-dimensional nanostructured materials show large variations in their thermal transport properties...
Managing thermal transport in nanostructures became a major challenge in the development of active m...
Thermoelectricity offers an excellent clean energy generation opportunity and has attracted renewed ...
We report on structural, compositional, and thermal characterization of self-assembled in-plane epit...
We have grown various samples of Si and SiGe nanowires (NWs), either by a classical vapor?liquid?sol...
Thermal imaging of individual silicon nanowires (Si NWs) is carried out by a scanning thermal micros...
International audienceWe have investigated various kinds of nanowires (Si, Bi2Te3, SiGe) in order to...
Paper presented at the 12th European Conference on Thermoelectricity (ECT Madrid 2014), held in Madr...
The thermal conductivities of Si1−xGex nanowires (NWs) synthesized with Ge concentrations of 0.0%, 0...
Various theoretical and experimental methods are utilized to investigate the thermal conductivity of...
We investigate the parametrization and optimization of thermal conductivity in silicon-germanium all...
We report a new technique to profile the thermal resistance along a nanowire with a spatial resoluti...
Low-dimensional nanostructured materials show large variation in their thermal transport properties....
Les nanofils semi-conducteurs suscitent un intérêt croissant en raison de leur potentiel pour de nou...
Low-dimensional nanostructured materials show large variations in their thermal transport properties...
Managing thermal transport in nanostructures became a major challenge in the development of active m...
Thermoelectricity offers an excellent clean energy generation opportunity and has attracted renewed ...
We report on structural, compositional, and thermal characterization of self-assembled in-plane epit...
We have grown various samples of Si and SiGe nanowires (NWs), either by a classical vapor?liquid?sol...
Thermal imaging of individual silicon nanowires (Si NWs) is carried out by a scanning thermal micros...
International audienceWe have investigated various kinds of nanowires (Si, Bi2Te3, SiGe) in order to...
Paper presented at the 12th European Conference on Thermoelectricity (ECT Madrid 2014), held in Madr...
The thermal conductivities of Si1−xGex nanowires (NWs) synthesized with Ge concentrations of 0.0%, 0...
Various theoretical and experimental methods are utilized to investigate the thermal conductivity of...
We investigate the parametrization and optimization of thermal conductivity in silicon-germanium all...
We report a new technique to profile the thermal resistance along a nanowire with a spatial resoluti...
Low-dimensional nanostructured materials show large variation in their thermal transport properties....
Les nanofils semi-conducteurs suscitent un intérêt croissant en raison de leur potentiel pour de nou...
Low-dimensional nanostructured materials show large variations in their thermal transport properties...
Managing thermal transport in nanostructures became a major challenge in the development of active m...
Thermoelectricity offers an excellent clean energy generation opportunity and has attracted renewed ...