High-entropy ceramics (HECs) are solid solutions of inorganic compounds with one or more Wyckoff sites shared by equal or near-equal atomic ratios of multi-principal elements. Although in the infant stage, the emerging of this new family of materials has brought new opportunities for material design and property tailoring. Distinct from metals, the diversity in crystal structure and electronic structure of ceramics provides huge space for properties tuning through band structure engineering and phonon engineering. Aside from strengthening, hardening, and low thermal conductivity that have already been found in high-entropy alloys, new properties like colossal dielectric constant, super ionic conductivity, severe anisotropic thermal expansio...
Thermal/environmental barrier coatings are a gradually important field of research arising from the ...
Thermal/environmental barrier coatings are a gradually important field of research arising from the ...
High-entropy materials have attracted considerable interest due to their unique, improved properties...
High-entropy ceramics (HECs) are solid solutions of inorganic compounds with one or more Wyckoff sit...
High-entropy alloy (HEA) is a multicomponent alloy material that contains five or more principal ele...
Herein, we critically evaluate computational and experimental studies in the emerging field of high-...
Compositionally complex materials – whose structure, stability and physical characteristics are dete...
Compositionally complex materials – whose structure, stability and physical characteristics are dete...
The high-entropy carbides (HECs) are reviewed in terms of the crystal structure, powder synthesis, d...
Since their discovery in 2004, High Entropy Alloys (HEAs) have become a major research area in the f...
Since their discovery in 2004, High Entropy Alloys (HEAs) have become a major research area in the f...
The everlasting demands of new materials to fulfill certain functional or structural applications st...
Today’s emerging technologies in high temperature applications are placing difficult demands on stru...
Utilizing entropy as the driving force for stabilizing oxide materials offers a path for the discove...
Today’s emerging technologies in high temperature applications are placing difficult demands on stru...
Thermal/environmental barrier coatings are a gradually important field of research arising from the ...
Thermal/environmental barrier coatings are a gradually important field of research arising from the ...
High-entropy materials have attracted considerable interest due to their unique, improved properties...
High-entropy ceramics (HECs) are solid solutions of inorganic compounds with one or more Wyckoff sit...
High-entropy alloy (HEA) is a multicomponent alloy material that contains five or more principal ele...
Herein, we critically evaluate computational and experimental studies in the emerging field of high-...
Compositionally complex materials – whose structure, stability and physical characteristics are dete...
Compositionally complex materials – whose structure, stability and physical characteristics are dete...
The high-entropy carbides (HECs) are reviewed in terms of the crystal structure, powder synthesis, d...
Since their discovery in 2004, High Entropy Alloys (HEAs) have become a major research area in the f...
Since their discovery in 2004, High Entropy Alloys (HEAs) have become a major research area in the f...
The everlasting demands of new materials to fulfill certain functional or structural applications st...
Today’s emerging technologies in high temperature applications are placing difficult demands on stru...
Utilizing entropy as the driving force for stabilizing oxide materials offers a path for the discove...
Today’s emerging technologies in high temperature applications are placing difficult demands on stru...
Thermal/environmental barrier coatings are a gradually important field of research arising from the ...
Thermal/environmental barrier coatings are a gradually important field of research arising from the ...
High-entropy materials have attracted considerable interest due to their unique, improved properties...