The diameter dependence of the thermal conductivity of InAs nanowires in the range of 40-1500 nm has been measured. We demonstrate a reduction in thermal conductivity of 80% for 40 nm nanowires, opening the way for further design strategies for nanoscaled thermoelectric materials. Furthermore, we investigate the effect of thermal contact in the most common measurement method for nanoscale thermal conductivity. Our study allows for the determination of the thermal contact using existing measurement setups. The thermal contact resistance is found to be comparable to the wire thermal resistance for wires with a diameter of 90 nm and higher
The ability to measure and understand heat flow in nanowire composites is crucial for applications r...
Electrical conductance through InAs nanowires is relevant for electronic applications as well as for...
Electrical conductance through InAs nanowires is relevant for electronic applications as well as for...
The diameter dependence of the thermal conductivity of InAs nanowires in the range of 40–1500 nm has...
The diameter dependence of the thermal conductivity of InAs nanowires in the range of 40–1500 nm has...
The diameter dependence of the thermal conductivity of InAs nanowires in the range of 40–1500 nm has...
The diameter dependence of the thermal conductivity of InAs nanowires in the range of 40–1500 nm has...
The diameter dependence of the thermal conductivity of InAs nanowires in the range of 40–1500 nm has...
The diameter dependence of the thermal conductivity of InAs nanowires in the range of 40–1500 nm has...
The diameter dependence of the thermal conductivity of InAs nanowires in the range of 40-1500 nm has...
We demonstrated device architectures implementing suspended InAs nanowires for thermal conductivity ...
We demonstrated device architectures implementing suspended InAs nanowires for thermal conductivity ...
We demonstrated device architectures implementing suspended InAs nanowires for thermal conductivity ...
We demonstrated device architectures implementing suspended InAs nanowires for thermal conductivity ...
We demonstrated device architectures implementing suspended InAs nanowires for thermal conductivity ...
The ability to measure and understand heat flow in nanowire composites is crucial for applications r...
Electrical conductance through InAs nanowires is relevant for electronic applications as well as for...
Electrical conductance through InAs nanowires is relevant for electronic applications as well as for...
The diameter dependence of the thermal conductivity of InAs nanowires in the range of 40–1500 nm has...
The diameter dependence of the thermal conductivity of InAs nanowires in the range of 40–1500 nm has...
The diameter dependence of the thermal conductivity of InAs nanowires in the range of 40–1500 nm has...
The diameter dependence of the thermal conductivity of InAs nanowires in the range of 40–1500 nm has...
The diameter dependence of the thermal conductivity of InAs nanowires in the range of 40–1500 nm has...
The diameter dependence of the thermal conductivity of InAs nanowires in the range of 40–1500 nm has...
The diameter dependence of the thermal conductivity of InAs nanowires in the range of 40-1500 nm has...
We demonstrated device architectures implementing suspended InAs nanowires for thermal conductivity ...
We demonstrated device architectures implementing suspended InAs nanowires for thermal conductivity ...
We demonstrated device architectures implementing suspended InAs nanowires for thermal conductivity ...
We demonstrated device architectures implementing suspended InAs nanowires for thermal conductivity ...
We demonstrated device architectures implementing suspended InAs nanowires for thermal conductivity ...
The ability to measure and understand heat flow in nanowire composites is crucial for applications r...
Electrical conductance through InAs nanowires is relevant for electronic applications as well as for...
Electrical conductance through InAs nanowires is relevant for electronic applications as well as for...