Polycrystalline silicon is used in microelectronic and microelectromechanical devices for which thermal design is important. This work measures the in-plane thermal conductivities of free-standing undoped polycrystalline layers between 20 and 300 K. The layers have a thickness of 1 +m, and the measurements are performed using steady-state Joule heating and electrical-resistance thermom-etry in patterned aluminum microbridges. The layer thermal conductivities are found to depend strongly on the details of the deposition process through the grain size distribution, which is investigated using atomic force microscopy and transmission electron microscopy. The room-temperature thermal conductivity of as-grown polycrystalline silicon is found to ...
Controlling thermal energy transfer at the nanoscale and thermal properties has become critically im...
We experimentally investigate the role of size effects and boundary scattering on the thermal conduc...
International audienceWe present a rigorous analysis of the thermal conductivity of bulk silicon (Si...
Polycrystalline silicon is used in microelectronic and microelectromechanical devices for which ther...
Nanostructured silicon is a promising material for thermoelectric conversion because the thermal con...
[[abstract]]The electrical properties of lightly doped polycrystalline silicon as a function of temp...
Using reverse non-equilibrium molecular dynamics method, we study the thermal properties of grain bo...
Silicon, one of the most abundant elements on earth, is a promising candidate for thermoelectric app...
This paper reports the cross-plane thermal conductivity of ordered mesoporous nanocrystalline silico...
A capability for measuring the thermal conductivity of microelectromechanical systems (MEMS) materia...
ABSTRACT: This paper reports the cross-plane thermal conductivity of ordered mesoporous nanocrystall...
Nanostructured materials exhibit low thermal conductivity because of the additional scattering due t...
In the solar energy, thermoelectric, and solid-state laser industries, polycrystalline semiconductor...
A concurrent computational and experimental investigation of thermal transport is performed with the...
The thermal conductivity (k) of a semiconducting nanostructure is dramatically reduced from the bulk...
Controlling thermal energy transfer at the nanoscale and thermal properties has become critically im...
We experimentally investigate the role of size effects and boundary scattering on the thermal conduc...
International audienceWe present a rigorous analysis of the thermal conductivity of bulk silicon (Si...
Polycrystalline silicon is used in microelectronic and microelectromechanical devices for which ther...
Nanostructured silicon is a promising material for thermoelectric conversion because the thermal con...
[[abstract]]The electrical properties of lightly doped polycrystalline silicon as a function of temp...
Using reverse non-equilibrium molecular dynamics method, we study the thermal properties of grain bo...
Silicon, one of the most abundant elements on earth, is a promising candidate for thermoelectric app...
This paper reports the cross-plane thermal conductivity of ordered mesoporous nanocrystalline silico...
A capability for measuring the thermal conductivity of microelectromechanical systems (MEMS) materia...
ABSTRACT: This paper reports the cross-plane thermal conductivity of ordered mesoporous nanocrystall...
Nanostructured materials exhibit low thermal conductivity because of the additional scattering due t...
In the solar energy, thermoelectric, and solid-state laser industries, polycrystalline semiconductor...
A concurrent computational and experimental investigation of thermal transport is performed with the...
The thermal conductivity (k) of a semiconducting nanostructure is dramatically reduced from the bulk...
Controlling thermal energy transfer at the nanoscale and thermal properties has become critically im...
We experimentally investigate the role of size effects and boundary scattering on the thermal conduc...
International audienceWe present a rigorous analysis of the thermal conductivity of bulk silicon (Si...