Thesis advisor: Zhifeng RenSiGe alloys are the only proven thermoelectric materials in power generation devices operating above 600 °C and up to 1000 °C in heat conversion into electricity using a radioisotope as the heat source. In addition to radioisotope applications, SiGe thermoelectric materials have many other potential applications, for example, solar thermal to electricity energy conversion and waste heat recovery. However, traditional SiGe alloy material shows low ZT values of about 0.93 at 900 °C, thus, 8% is the highest device efficiency for commercial SiGe thermoelectric devices. Recently, many efforts have been made to enhance the dimensionless thermoelectric figure-of-merit (ZT) of SiGe alloys. Among them, the nano approach h...
The rapid increase in thermoelectric (TE) materials R&D is a consequence of the growing need to incr...
Various theoretical and experimental methods are utilized to investigate the thermal conductivity of...
The rapid increase in thermoelectric (TE) materials R&D is a consequence of the growing need to incr...
Silicon-germanium (SiGe) alloys are prominent high-temperature thermoelectric (TE) materials used as...
Thesis advisor: Zhifeng RenThermoelectric materials have attracted a lot of research interests becau...
Direct energy conversion from thermal to electrical energy, based on thermoelectric effects, is attr...
This PhD thesis researches thermoelectric generator (TEG) which transfers wasted heat into electrici...
The imminent oil crisis and global warming has revived research on sustainable energy resources. The...
Silicon-germanium (SiGe) thermoelectric material is especially suited in power generation operating ...
Silicon-germanium (SiGe) thermoelectric material is especially suited in power generation operating ...
Silicon-germanium alloys is one of the best thermoelectric materials in power generation devices ope...
Thesis advisor: Zhifeng RenSolid-state cooling and power generation based on thermoelectric effects ...
Thesis advisor: Zhifeng RenThermoelectric (TE) technology is an environment-friendly one due to redu...
We report on thermoelectric properties of low Ge content n-type Si0.9Ge0.1–Mg2Si nanocomposite. Intr...
Thesis advisor: Zhifeng RenThermoelectrics, as one promising approach for solid-state energy convers...
The rapid increase in thermoelectric (TE) materials R&D is a consequence of the growing need to incr...
Various theoretical and experimental methods are utilized to investigate the thermal conductivity of...
The rapid increase in thermoelectric (TE) materials R&D is a consequence of the growing need to incr...
Silicon-germanium (SiGe) alloys are prominent high-temperature thermoelectric (TE) materials used as...
Thesis advisor: Zhifeng RenThermoelectric materials have attracted a lot of research interests becau...
Direct energy conversion from thermal to electrical energy, based on thermoelectric effects, is attr...
This PhD thesis researches thermoelectric generator (TEG) which transfers wasted heat into electrici...
The imminent oil crisis and global warming has revived research on sustainable energy resources. The...
Silicon-germanium (SiGe) thermoelectric material is especially suited in power generation operating ...
Silicon-germanium (SiGe) thermoelectric material is especially suited in power generation operating ...
Silicon-germanium alloys is one of the best thermoelectric materials in power generation devices ope...
Thesis advisor: Zhifeng RenSolid-state cooling and power generation based on thermoelectric effects ...
Thesis advisor: Zhifeng RenThermoelectric (TE) technology is an environment-friendly one due to redu...
We report on thermoelectric properties of low Ge content n-type Si0.9Ge0.1–Mg2Si nanocomposite. Intr...
Thesis advisor: Zhifeng RenThermoelectrics, as one promising approach for solid-state energy convers...
The rapid increase in thermoelectric (TE) materials R&D is a consequence of the growing need to incr...
Various theoretical and experimental methods are utilized to investigate the thermal conductivity of...
The rapid increase in thermoelectric (TE) materials R&D is a consequence of the growing need to incr...