Semiconductor nanostructures have raised much hope for the implementation of high-performance thermoelectric generators. Indeed, they are expected to make available reduced thermal conductivity without a heavy trade-off on electrical conductivity, a key requirement to optimize the thermoelectric figure of merit. Here, a novel nanodevice architecture is presented in which ionic liquids are employed as thermally-insulating gate dielectrics. These devices allow the field-effect control of electrical transport in suspended semiconducting nanowires in which thermal conductivity can be simultaneously measured using an all-electrical setup. The resulting experimental data on electrical and thermal transport properties taken on individual...
Thermoelectric materials convert temperature differences into electricity and vice versa. Such mate...
This thesis concerns itself with the theoretical and computational study of the thermal and electric...
The diameter dependence of the thermal conductivity of InAs nanowires in the range of 40-1500 nm has...
Semiconductor nanostructures have raised much hope for the implementation of high-performance thermo...
Thermoelectric polyelectrolytes are emerging as ideal material platform for self-powered bio-compati...
International audienceWe review a series of works describing thermoelectric effects in gated disorde...
Millivolt range thermovoltage is demonstrated in single InAs nanowire based field effect transistors...
Substantial attempts have been made in recent decades to enhance the thermoelectric performance and ...
Nano-structuration of bulk into nanowires and nanosheets has led to massive changes in device behavi...
We demonstrated device architectures implementing suspended InAs nanowires for thermal conductivity ...
12 pages, 8 figures, 4 appendicesInternational audienceWe study arrays of parallel doped semiconduct...
Abstract The field of nanoscale thermoelectrics began with a clear motivation for better performance...
Semiconductor nanowire heterostructures have been shown to provide appealing properties for optoelec...
This review focuses on the investigation and enhancement of the thermoelectric properties of semicon...
We fabricate dual-gated electric double layer (EDL) field effect transistors based on InAs nanowires...
Thermoelectric materials convert temperature differences into electricity and vice versa. Such mate...
This thesis concerns itself with the theoretical and computational study of the thermal and electric...
The diameter dependence of the thermal conductivity of InAs nanowires in the range of 40-1500 nm has...
Semiconductor nanostructures have raised much hope for the implementation of high-performance thermo...
Thermoelectric polyelectrolytes are emerging as ideal material platform for self-powered bio-compati...
International audienceWe review a series of works describing thermoelectric effects in gated disorde...
Millivolt range thermovoltage is demonstrated in single InAs nanowire based field effect transistors...
Substantial attempts have been made in recent decades to enhance the thermoelectric performance and ...
Nano-structuration of bulk into nanowires and nanosheets has led to massive changes in device behavi...
We demonstrated device architectures implementing suspended InAs nanowires for thermal conductivity ...
12 pages, 8 figures, 4 appendicesInternational audienceWe study arrays of parallel doped semiconduct...
Abstract The field of nanoscale thermoelectrics began with a clear motivation for better performance...
Semiconductor nanowire heterostructures have been shown to provide appealing properties for optoelec...
This review focuses on the investigation and enhancement of the thermoelectric properties of semicon...
We fabricate dual-gated electric double layer (EDL) field effect transistors based on InAs nanowires...
Thermoelectric materials convert temperature differences into electricity and vice versa. Such mate...
This thesis concerns itself with the theoretical and computational study of the thermal and electric...
The diameter dependence of the thermal conductivity of InAs nanowires in the range of 40-1500 nm has...