The concept of using self-assembled and force- engineered nanostructures to enhance the thermoelectric figure of merit relative to bulk homogeneous and composite materials is presented in general terms. Specific application is made to the Si-Ge system for use in power generation at high temperature. The scientific advantages of the nanocomposite approach for the simultaneous increase in the power factor and decrease of the thermal conductivity are emphasized along with the practical advantages of having bulk samples for property measurements and a straightforward path to scale-up materials synthesis and integration of nanostructured materials into thermoelectric cooling and power generation devices. © 2008 Materials Research Society
Modulation-doping was theoretically proposed and experimentally proved to be effective in increasing...
Direct energy conversion from thermal to electrical energy, based on thermoelectric effects, is attr...
Silicon-germanium (SiGe) thermoelectric material is especially suited in power generation operating ...
Development of new thermoelectric materials has been rapid in past few years. The goal of the work a...
According to the Lawrence Livermore National Laboratory, nearly 70% of energy produced in the United...
Thermoelectric materials could play an increasing role for the efficient use of energy resources and...
We report a method for preparing p-type silicon germanium bulk alloys directly from a boron-doped si...
Silicon and germanium present distinct and interesting transport properties. However, composites mad...
In a thermoelectric material, a temperature difference will give rise to an electric potential that ...
Thermoelectrics are presently used in a number of applications for both turning heat into electricit...
Nanostructured materials can be used to improve the performance of thermoelectric materials. The the...
The making of composites has served as a working principle of achieving material properties beyond t...
Thermoelectric properties of nanostructured FeSi2, Mg2Si, and SiGe are compared with their nanocompo...
Progresses in thermoelectric (TE) materials will contribute to solving the world’s demands for energ...
In the past decades, as an emission-free technique capable of realizing direct energy conversion bet...
Modulation-doping was theoretically proposed and experimentally proved to be effective in increasing...
Direct energy conversion from thermal to electrical energy, based on thermoelectric effects, is attr...
Silicon-germanium (SiGe) thermoelectric material is especially suited in power generation operating ...
Development of new thermoelectric materials has been rapid in past few years. The goal of the work a...
According to the Lawrence Livermore National Laboratory, nearly 70% of energy produced in the United...
Thermoelectric materials could play an increasing role for the efficient use of energy resources and...
We report a method for preparing p-type silicon germanium bulk alloys directly from a boron-doped si...
Silicon and germanium present distinct and interesting transport properties. However, composites mad...
In a thermoelectric material, a temperature difference will give rise to an electric potential that ...
Thermoelectrics are presently used in a number of applications for both turning heat into electricit...
Nanostructured materials can be used to improve the performance of thermoelectric materials. The the...
The making of composites has served as a working principle of achieving material properties beyond t...
Thermoelectric properties of nanostructured FeSi2, Mg2Si, and SiGe are compared with their nanocompo...
Progresses in thermoelectric (TE) materials will contribute to solving the world’s demands for energ...
In the past decades, as an emission-free technique capable of realizing direct energy conversion bet...
Modulation-doping was theoretically proposed and experimentally proved to be effective in increasing...
Direct energy conversion from thermal to electrical energy, based on thermoelectric effects, is attr...
Silicon-germanium (SiGe) thermoelectric material is especially suited in power generation operating ...