Thermoelectric (TE) generators that efficiently recycle a large portion of waste heat will be an important complementary energy technology in the future. While many efficient TE materials exist in the lower temperature region, few are efficient at high temperatures. Here, we present the high temperature properties of high-entropy alloys (HEAs), as a potential new class of high temperature TE materials. We show that their TE properties can be controlled significantly by changing the valence electron concentration (VEC) of the system with appropriate substitutional elements. Both the electrical and thermal transport properties in this system were found to decrease with a lower VEC number. Overall, the large microstructural complexity and lowe...
The efficiency of thermal-to-electrical conversion depends on high electrical conductivity (σ), high...
Over the past decade, high entropy alloys (HEAs) have transcended the frontiers of material developm...
Over the past decade, high entropy alloys (HEAs) have transcended the frontiers of material developm...
Thermoelectric (TE) generators that efficiently recycle a large portion of waste heat will be an imp...
Thermoelectric (TE) materials can interconvert waste heat into electricity, which will become altern...
Thermoelectric (TE) materials can interconvert waste heat into electricity, which will become altern...
High-entropy materials, which consist of multiple elements occupying a single sublattice in a disord...
Thermoelectric materials have attracted extensive attention because they can directly convert waste ...
Thermoelectric materials have attracted extensive attention because they can directly convert waste ...
In our study, we designed the PbSnTeSe high-entropy alloy (HEA) and investigated its microstructure ...
In thermoelectrics, entropy engineering as an emerging paradigm-shifting strategy can simultaneously...
Among the existing materials for heat conversion, high-entropy alloys are of great interest due to t...
Energy harvesting with thermoelectric materials has been investigated with increasing attention over...
We develop a strategy to design and evaluate high-entropy alloys (HEAs) for structural use in the tr...
The world's demand for energy is increasing dramatically, but the best energy conversion systems ope...
The efficiency of thermal-to-electrical conversion depends on high electrical conductivity (σ), high...
Over the past decade, high entropy alloys (HEAs) have transcended the frontiers of material developm...
Over the past decade, high entropy alloys (HEAs) have transcended the frontiers of material developm...
Thermoelectric (TE) generators that efficiently recycle a large portion of waste heat will be an imp...
Thermoelectric (TE) materials can interconvert waste heat into electricity, which will become altern...
Thermoelectric (TE) materials can interconvert waste heat into electricity, which will become altern...
High-entropy materials, which consist of multiple elements occupying a single sublattice in a disord...
Thermoelectric materials have attracted extensive attention because they can directly convert waste ...
Thermoelectric materials have attracted extensive attention because they can directly convert waste ...
In our study, we designed the PbSnTeSe high-entropy alloy (HEA) and investigated its microstructure ...
In thermoelectrics, entropy engineering as an emerging paradigm-shifting strategy can simultaneously...
Among the existing materials for heat conversion, high-entropy alloys are of great interest due to t...
Energy harvesting with thermoelectric materials has been investigated with increasing attention over...
We develop a strategy to design and evaluate high-entropy alloys (HEAs) for structural use in the tr...
The world's demand for energy is increasing dramatically, but the best energy conversion systems ope...
The efficiency of thermal-to-electrical conversion depends on high electrical conductivity (σ), high...
Over the past decade, high entropy alloys (HEAs) have transcended the frontiers of material developm...
Over the past decade, high entropy alloys (HEAs) have transcended the frontiers of material developm...