Ge-rich multiple quantum well heterostructures have been investigated as engineered material for efficient thermoelectric generators monolithically integrated on silicon substrates. Thick Ge/SiGe multilayers on Si substrates designed for lateral thermoelectric devices have been grown and characterized in which electrical and thermal conduction occur parallel to the heterostructure interfaces. In this study, an overview of the investigated structures is presented together with results from X-ray scattering and transmission electron microscopy experiments. These analyses confirm the high quality of the material and the uniformity of the structure over the whole deposited thickness. Important parameters in terms of the optimization of the mate...
The electrical conductivity, Seebeck coefficients, and thermal conductivities of a range of p-type G...
The electrical conductivity, Seebeck coefficients, and thermal conductivities of a range of p-type G...
Thermoelectric materials have great potential for a range of energy harvesting applications, while t...
Ge-rich multiple quantum well heterostructures have been investigated as engineered material for eff...
Ge/SiGe multiple quantum wells are presented as efficient material for room-temperature thermoelectr...
Thermoelectrics are presently used in a number of applications for both turning heat into electricit...
Thermoelectrics are presently used in a number of applications for both turning heat into electricit...
Thermoelectrics are presently used in a number of applications for both turning heat into electricit...
Results for low dimensional p-type Ge/SiGe superlattices with Ge quantum wells of 3.43 nm are presen...
We report recent progresses in the characterization of the vertical electrical and thermal propertie...
We report recent progresses in the characterization of the vertical electrical and thermal propertie...
Silicon and germanium materials have demonstrated an increasing attraction for energy harvesting, du...
Silicon and germanium materials have demonstrated an increasing attraction for energy harvesting, du...
Silicon and germanium materials have demonstrated an increasing attraction for energy harvesting, du...
Silicon and germanium materials have demonstrated an increasing attraction for energy harvesting, du...
The electrical conductivity, Seebeck coefficients, and thermal conductivities of a range of p-type G...
The electrical conductivity, Seebeck coefficients, and thermal conductivities of a range of p-type G...
Thermoelectric materials have great potential for a range of energy harvesting applications, while t...
Ge-rich multiple quantum well heterostructures have been investigated as engineered material for eff...
Ge/SiGe multiple quantum wells are presented as efficient material for room-temperature thermoelectr...
Thermoelectrics are presently used in a number of applications for both turning heat into electricit...
Thermoelectrics are presently used in a number of applications for both turning heat into electricit...
Thermoelectrics are presently used in a number of applications for both turning heat into electricit...
Results for low dimensional p-type Ge/SiGe superlattices with Ge quantum wells of 3.43 nm are presen...
We report recent progresses in the characterization of the vertical electrical and thermal propertie...
We report recent progresses in the characterization of the vertical electrical and thermal propertie...
Silicon and germanium materials have demonstrated an increasing attraction for energy harvesting, du...
Silicon and germanium materials have demonstrated an increasing attraction for energy harvesting, du...
Silicon and germanium materials have demonstrated an increasing attraction for energy harvesting, du...
Silicon and germanium materials have demonstrated an increasing attraction for energy harvesting, du...
The electrical conductivity, Seebeck coefficients, and thermal conductivities of a range of p-type G...
The electrical conductivity, Seebeck coefficients, and thermal conductivities of a range of p-type G...
Thermoelectric materials have great potential for a range of energy harvesting applications, while t...