Thermoelectric (TE) materials can interconvert waste heat into electricity, which will become alternative energy sources in the future. The high-entropy alloys (HEAs) as a new class of materials are well-known for some excellent properties, such as high friction toughness, excellent fatigue resistance, and corrosion resistance. Here, we present a series of HEAs to be potential candidates for the thermoelectric materials. The thermoelectric properties of YxCoCrFeNi, GdxCoCrFeNiCu, and annealed Al0.3CoCrFeNi were investigated. The effects of grain size and formation of the second phase on thermoelectric properties were revealed. In HEAs, we can reduce the thermal conductivity by controlling the phonon scattering due to the considerable comple...
We developed a series of Co-rich CoxCr25(FeNi)75−x (x = 35, 45, 55, 65) high entropy alloys with imp...
Over the past decade, high entropy alloys (HEAs) have transcended the frontiers of material developm...
In this paper, we explore the synthesis of new antimonide compounds based upon concepts of high entr...
Thermoelectric (TE) materials can interconvert waste heat into electricity, which will become altern...
Thermoelectric (TE) generators that efficiently recycle a large portion of waste heat will be an imp...
Thermoelectric (TE) generators that efficiently recycle a large portion of waste heat will be an imp...
High-entropy materials, which consist of multiple elements occupying a single sublattice in a disord...
In our study, we designed the PbSnTeSe high-entropy alloy (HEA) and investigated its microstructure ...
Thermoelectric materials have attracted extensive attention because they can directly convert waste ...
Thermoelectric materials have attracted extensive attention because they can directly convert waste ...
We develop a strategy to design and evaluate high-entropy alloys (HEAs) for structural use in the tr...
The application of the high-entropy concept has generated many interesting results for both alloys a...
Multi-principal elemental alloys, commonly referred to as high-entropy alloys (HEAs), are a new clas...
Among the existing materials for heat conversion, high-entropy alloys are of great interest due to t...
In this paper, we explore the synthesis of new antimonide compounds based upon concepts of high entr...
We developed a series of Co-rich CoxCr25(FeNi)75−x (x = 35, 45, 55, 65) high entropy alloys with imp...
Over the past decade, high entropy alloys (HEAs) have transcended the frontiers of material developm...
In this paper, we explore the synthesis of new antimonide compounds based upon concepts of high entr...
Thermoelectric (TE) materials can interconvert waste heat into electricity, which will become altern...
Thermoelectric (TE) generators that efficiently recycle a large portion of waste heat will be an imp...
Thermoelectric (TE) generators that efficiently recycle a large portion of waste heat will be an imp...
High-entropy materials, which consist of multiple elements occupying a single sublattice in a disord...
In our study, we designed the PbSnTeSe high-entropy alloy (HEA) and investigated its microstructure ...
Thermoelectric materials have attracted extensive attention because they can directly convert waste ...
Thermoelectric materials have attracted extensive attention because they can directly convert waste ...
We develop a strategy to design and evaluate high-entropy alloys (HEAs) for structural use in the tr...
The application of the high-entropy concept has generated many interesting results for both alloys a...
Multi-principal elemental alloys, commonly referred to as high-entropy alloys (HEAs), are a new clas...
Among the existing materials for heat conversion, high-entropy alloys are of great interest due to t...
In this paper, we explore the synthesis of new antimonide compounds based upon concepts of high entr...
We developed a series of Co-rich CoxCr25(FeNi)75−x (x = 35, 45, 55, 65) high entropy alloys with imp...
Over the past decade, high entropy alloys (HEAs) have transcended the frontiers of material developm...
In this paper, we explore the synthesis of new antimonide compounds based upon concepts of high entr...