Thermoelectrics are presently used in a number of applications for both turning heat into electricity and also for using electricity to produce cooling. Mature Si/SiGe and Ge/SiGe heteroepitaxial growth technology would allow highly efficient thermoelectric materials to be engineered, which would be compatible and integrable with complementary metal oxide silicon micropower circuits used in autonomous systems. A high thermoelectric figure of merit requires that electrical conductivity be maintained while thermal conductivity is reduced; thermoelectric figures of merit can be improved with respect to bulk thermoelectric materials by fabricating low-dimensional structures which enhance the density of states near the Fermi level and through ph...
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...
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...
Ge/SiGe multiple quantum wells are presented as efficient material for room-temperature thermoelectr...
Ge-rich multiple quantum well heterostructures have been investigated as engineered material for eff...
Ge-rich multiple quantum well heterostructures have been investigated as engineered material for eff...
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...
SiGe is one of the best thermoelectric materials for high temperature applications. Superlattice str...
Silicon and germanium present distinct and interesting transport properties. However, composites mad...
Results for low dimensional p-type Ge/SiGe superlattices with Ge quantum wells of 3.43 nm are presen...
Thermoelectric materials are one potential technology that could be used for energy harvesting. Here...
Thermoelectric materials are one potential technology that could be used for energy harvesting. Here...
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...
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...
Ge/SiGe multiple quantum wells are presented as efficient material for room-temperature thermoelectr...
Ge-rich multiple quantum well heterostructures have been investigated as engineered material for eff...
Ge-rich multiple quantum well heterostructures have been investigated as engineered material for eff...
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...
SiGe is one of the best thermoelectric materials for high temperature applications. Superlattice str...
Silicon and germanium present distinct and interesting transport properties. However, composites mad...
Results for low dimensional p-type Ge/SiGe superlattices with Ge quantum wells of 3.43 nm are presen...
Thermoelectric materials are one potential technology that could be used for energy harvesting. Here...
Thermoelectric materials are one potential technology that could be used for energy harvesting. Here...
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...