Measurements and modeling of Cu2Se, Ag2Se, and Cu2S show that superionic conductors have great potential as thermoelectric materials. Cu2Se and Ag2Se are predicted to reach a zT of 1.2 at room temperature if their carrier concentrations can be reduced, and Cu-vacancy doped Cu2S reaches a maximum zT of 1.7 at 1000 K. Te-doped Ag2Se achieves a zT of 1.2 at 520 K, and could reach a zT of 1.7 if its carrier concentration could be reduced. However, superionic conductors tend to have high carrier concentrations due to the presence of metal defects. The carrier concentration has been found to be difficult to reduce by altering the defect concentration, therefore materials that are underdoped relative to the optimum carrier concentration are easie...
Vast amounts of heat are emitted by industrial factories, automobiles and geologic formations. To co...
In addition to eco friendliness and low raw material cost, Cu2S0.5Se0.5 exhibits promising middle to...
Superionic thermoelectric materials have been shown to have high figure-of-merits, leading to expect...
The quality of a thermoelectric material is judged by the size of its temperature de- pendent thermo...
Superionic Cu2Se-based thermoelectric materials have attracted extensive attention in recent years d...
In an ever-changing global environment, energy-related issues have become a central feature in the d...
The superionic conductor Cu_(2−δ)Se has been shown to be a promising thermoelectric at higher temper...
The superionic conductor Cu<sub>2−δ</sub>Se has been shown to be a promising thermoelectric at highe...
The superionic conductor Cu2-delta Se has been shown to be a promising thermoelectric at higher temp...
Among all the state-of-the-art high temperature thermoelectric materials, the superionic Cu2-xSe and...
Recently, copper chalcogenides have attracted great attention due to their potential application for...
Trabajo presentado en la NanoSpain Conference, celebrada en Logroño (España), del 15 al 18 de marzo ...
In the last decade, high-performance CuSe thermoelectric materials and devices are attracting increa...
AbstractThe recently reported superior thermoelectric performance of SnSe, motivates the current wor...
Advanced thermoelectric technology offers a potential for converting waste industrial heat into usef...
Vast amounts of heat are emitted by industrial factories, automobiles and geologic formations. To co...
In addition to eco friendliness and low raw material cost, Cu2S0.5Se0.5 exhibits promising middle to...
Superionic thermoelectric materials have been shown to have high figure-of-merits, leading to expect...
The quality of a thermoelectric material is judged by the size of its temperature de- pendent thermo...
Superionic Cu2Se-based thermoelectric materials have attracted extensive attention in recent years d...
In an ever-changing global environment, energy-related issues have become a central feature in the d...
The superionic conductor Cu_(2−δ)Se has been shown to be a promising thermoelectric at higher temper...
The superionic conductor Cu<sub>2−δ</sub>Se has been shown to be a promising thermoelectric at highe...
The superionic conductor Cu2-delta Se has been shown to be a promising thermoelectric at higher temp...
Among all the state-of-the-art high temperature thermoelectric materials, the superionic Cu2-xSe and...
Recently, copper chalcogenides have attracted great attention due to their potential application for...
Trabajo presentado en la NanoSpain Conference, celebrada en Logroño (España), del 15 al 18 de marzo ...
In the last decade, high-performance CuSe thermoelectric materials and devices are attracting increa...
AbstractThe recently reported superior thermoelectric performance of SnSe, motivates the current wor...
Advanced thermoelectric technology offers a potential for converting waste industrial heat into usef...
Vast amounts of heat are emitted by industrial factories, automobiles and geologic formations. To co...
In addition to eco friendliness and low raw material cost, Cu2S0.5Se0.5 exhibits promising middle to...
Superionic thermoelectric materials have been shown to have high figure-of-merits, leading to expect...