We introduce the modulation-doping strategy in bulk SiGe nanostructures to improve the thermoelectric power factor. By separating charge carriers from their parent atoms via embedding heavily doped nanoparticles inside an intrinsic host matrix, the ionized impurity scattering rate could be largely reduced, resulting in enhanced mobility. By band engineering, the carriers can spill over from nanoparticles into the host matrix, resulting in similar carrier concentrations, Fermi levels and consequently Seebeck coefficients as those of the uniform nanocomposites. In addition, nanoparticles with low thermal conductivities can further reduce the overall thermal conductivity of the sample. Combining the enhanced electrical conductivity, the reduce...
The thermoelectric and physical properties of superlattices consisting of modulation doped Ge quantu...
The thermoelectric and physical properties of superlattices consisting of modulation doped Ge quantu...
With thermoelectric materials it is possible to convert a difference in temperature into electrical ...
Modulation-doping was theoretically proposed and experimentally proved to be effective in increasing...
The rapid increase in thermoelectric (TE) materials R&D is a consequence of the growing need to incr...
The rapid increase in thermoelectric (TE) materials R&D is a consequence of the growing need to incr...
Thermoelectric (TE) materials have undergone revolutionary progress over the last 20 years. The ther...
Point defect scattering via the formation of solid solutions to reduce the lattice thermal conductiv...
Thermoelectric power sources have consistently demonstrated their extraordinary reliability and long...
Thermoelectric power sources have consistently demonstrated their extraordinary reliability and long...
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...
The thermoelectric and physical properties of superlattices consisting of modulation doped Ge quantu...
Silicon and germanium present distinct and interesting transport properties. However, composites mad...
The thermoelectric and physical properties of superlattices consisting of modulation doped Ge quantu...
The thermoelectric and physical properties of superlattices consisting of modulation doped Ge quantu...
With thermoelectric materials it is possible to convert a difference in temperature into electrical ...
Modulation-doping was theoretically proposed and experimentally proved to be effective in increasing...
The rapid increase in thermoelectric (TE) materials R&D is a consequence of the growing need to incr...
The rapid increase in thermoelectric (TE) materials R&D is a consequence of the growing need to incr...
Thermoelectric (TE) materials have undergone revolutionary progress over the last 20 years. The ther...
Point defect scattering via the formation of solid solutions to reduce the lattice thermal conductiv...
Thermoelectric power sources have consistently demonstrated their extraordinary reliability and long...
Thermoelectric power sources have consistently demonstrated their extraordinary reliability and long...
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...
The thermoelectric and physical properties of superlattices consisting of modulation doped Ge quantu...
Silicon and germanium present distinct and interesting transport properties. However, composites mad...
The thermoelectric and physical properties of superlattices consisting of modulation doped Ge quantu...
The thermoelectric and physical properties of superlattices consisting of modulation doped Ge quantu...
With thermoelectric materials it is possible to convert a difference in temperature into electrical ...