Lead chalcogenides have long been used for space-based and thermoelectric remote power generation applications, but recent discoveries have revealed a much greater potential for these materials. This renaissance of interest combined with the need for increased energy efficiency has led to active consideration of thermoelectrics for practical waste heat recovery systems—such as the conversion of car exhaust heat into electricity. The simple high symmetry NaCl-type cubic structure, leads to several properties desirable for thermoelectricity, such as high valley degeneracy for high electrical conductivity and phonon anharmonicity for low thermal conductivity. The rich capabilities for both band structure and microstructure engineering enable a...
Copper chalcogenides have been the subject of extensive research as promising candidates in thermoel...
AbstractUnderstanding and manipulation of the band structure are important in designing high-perform...
Thermoelectric energy conversion efficiency is directly related to the temperature difference over w...
Lead chalcogenides have long been used for space-based and thermoelectric remote power generation ap...
The opportunity to use solid-state thermoelectrics for waste heat recovery has reinvigorated the fie...
In this chapter several aspects of the electronic and phonon structure are considered for the desig...
Research into thermoelectricity is rapidly moving toward attaining higher power conversion efficienc...
Thermoelectric power generators could aid reducing the carbon footprint of mankind by converting was...
With the growing interest of the world’s energy demand, sustainable and green energy is becoming a g...
In thermoelectric materials, the coupling between thermal and electrical currents allows for the dir...
Thermoelectric materials allow for direct conversion between heat and electricity, offering the pote...
Understanding and manipulation of the band structure are important in designing high-performance the...
Thermoelectric (TE) materials with high figure-of-merit ZT are critical to the development of energy...
Thermoelectric devices make it possible for direct energy conversion between heat and electricity. I...
Lead chalcogenide thermoelectric systems have been shown to reach record high figure of merit values...
Copper chalcogenides have been the subject of extensive research as promising candidates in thermoel...
AbstractUnderstanding and manipulation of the band structure are important in designing high-perform...
Thermoelectric energy conversion efficiency is directly related to the temperature difference over w...
Lead chalcogenides have long been used for space-based and thermoelectric remote power generation ap...
The opportunity to use solid-state thermoelectrics for waste heat recovery has reinvigorated the fie...
In this chapter several aspects of the electronic and phonon structure are considered for the desig...
Research into thermoelectricity is rapidly moving toward attaining higher power conversion efficienc...
Thermoelectric power generators could aid reducing the carbon footprint of mankind by converting was...
With the growing interest of the world’s energy demand, sustainable and green energy is becoming a g...
In thermoelectric materials, the coupling between thermal and electrical currents allows for the dir...
Thermoelectric materials allow for direct conversion between heat and electricity, offering the pote...
Understanding and manipulation of the band structure are important in designing high-performance the...
Thermoelectric (TE) materials with high figure-of-merit ZT are critical to the development of energy...
Thermoelectric devices make it possible for direct energy conversion between heat and electricity. I...
Lead chalcogenide thermoelectric systems have been shown to reach record high figure of merit values...
Copper chalcogenides have been the subject of extensive research as promising candidates in thermoel...
AbstractUnderstanding and manipulation of the band structure are important in designing high-perform...
Thermoelectric energy conversion efficiency is directly related to the temperature difference over w...