Silicon is currently the major semiconductor material for ICT and will probably sustain the Moore's law the coming decades in the integrated circuits and memories. As thermoelectric material silicon has suffered from the relatively high thermal conductivity, preventing successful exploitation of silicon in energy harvesting and in thermal management, i.e., like cooling. The recent experimental and theoretical results have shown that in ultra-thin silicon membranes the propagation of phonons can be largely blocked while maintaining the good electrical properties, high conductivity and Seebeck coefficient.[1] In this presentation we will discuss the potential of silicon membranes as thermoelectric material in the light of the recent findings ...
International audienceThe wealth of technological patterning technologies of deca-nanometer resoluti...
Silicon is the most widely used functional material, as it is geo-abundant and atoxic. Unfortunately...
Nanostructured silicon is a promising material for thermoelectric conversion because the thermal con...
Silicon is currently the major semiconductor material for ICT and will probably sustain the Moore's ...
The figure of merit of thermoelectric material is determined by electrical and thermal conductivitie...
International audienceThermoelectricity struggles with the lack of cheap, abundant, and environmenta...
Nanostructuring provides a viable route to improve the thermoelectric performance of materials, even...
International audienceHerein, we report the use of nanostructured crystalline silicon as a thermoele...
Silicon nanostructures with reduced dimensionality, such as nanowires, membranes, and thin films, ar...
The highly reduced thermal conductivity arising from confinement of acoustic phonons and enhanced p...
A detailed understanding of the connections of fabrication and processing to structural and thermal ...
A detailed understanding of the connections of fabrication and processing to structural and thermal ...
A detailed understanding of the connections of fabrication and processing to structural and thermal ...
Thermoelectric (TE) phenomenon can be used to convert thermal energy into electricity directly. Sinc...
Abstract Semiconductor nanostructures are promising can-didates for efficient thermoelectric energy ...
International audienceThe wealth of technological patterning technologies of deca-nanometer resoluti...
Silicon is the most widely used functional material, as it is geo-abundant and atoxic. Unfortunately...
Nanostructured silicon is a promising material for thermoelectric conversion because the thermal con...
Silicon is currently the major semiconductor material for ICT and will probably sustain the Moore's ...
The figure of merit of thermoelectric material is determined by electrical and thermal conductivitie...
International audienceThermoelectricity struggles with the lack of cheap, abundant, and environmenta...
Nanostructuring provides a viable route to improve the thermoelectric performance of materials, even...
International audienceHerein, we report the use of nanostructured crystalline silicon as a thermoele...
Silicon nanostructures with reduced dimensionality, such as nanowires, membranes, and thin films, ar...
The highly reduced thermal conductivity arising from confinement of acoustic phonons and enhanced p...
A detailed understanding of the connections of fabrication and processing to structural and thermal ...
A detailed understanding of the connections of fabrication and processing to structural and thermal ...
A detailed understanding of the connections of fabrication and processing to structural and thermal ...
Thermoelectric (TE) phenomenon can be used to convert thermal energy into electricity directly. Sinc...
Abstract Semiconductor nanostructures are promising can-didates for efficient thermoelectric energy ...
International audienceThe wealth of technological patterning technologies of deca-nanometer resoluti...
Silicon is the most widely used functional material, as it is geo-abundant and atoxic. Unfortunately...
Nanostructured silicon is a promising material for thermoelectric conversion because the thermal con...