We report on the thermal stability of epitaxial cubic-TiN/(Al,Sc)N metal/semiconductor superlattices with the rocksalt crystal structure for potential plasmonic, thermoelectric, and hard coating applications. TiN/Al0.72Sc0.28N superlattices were annealed at 950 and 1050 °C for 4, 24, and 120 h, and the thermal stability was characterized by high-energy synchrotron-radiation-based 2D X-ray diffraction, high-resolution (scanning) transmission electron microscopy [HR(S)/TEM], and energy dispersive X-ray spectroscopy (EDX) mapping. The TiN/Al0.72Sc0.28N superlattices were nominally stable for up to 4 h at both 950 and 1050 °C. Further annealing treatments for 24 and 120 h at 950 °C led to severe interdiffusion between the layers and the metasta...
The phase stability and mechanical properties of wurtzite (w)-Zr$_{0.25}$Al$_{0.75}$N/cubic (c)-TiN ...
Ferroelectric thin films of wurtzite-type aluminum scandium nitride (Al1-xScxN) are promising candid...
Ferroelectric thin films of wurtzite-type aluminum scandium nitride (Al1-xScxN) are promising candid...
High hardness TiAlN alloys for wear-resistant coatings exhibit limited lifetimes at elevated tempera...
High hardness TiAlN alloys for wear-resistant coatings exhibit limited lifetimes at elevated tempera...
High hardness TiAlN alloys for wear-resistant coatings exhibit limited lifetimes at elevated tempera...
Since the 1960s, researchers exploring the potential of artificially-structured materials for applic...
Supersaturated (Ti,Al)N materials with face centered cubic (fcc) structure offer unique combinations...
The possibility of using metal/semiconductor superlattices for thermionic energy conversion and soli...
Wear resistant hard films comprised of cubic transition metal nitride (c-TMN) and metastable c-AlN w...
Wear resistant hard films comprised of cubic transition metal nitride (c-TMN) and metastable c-AlN w...
We report the layer structure and composition in recently discovered TiN/SiN(001) superlattices depo...
We report the layer structure and composition in recently discovered TiN/SiN(001) superlattices depo...
We report the layer structure and composition in recently discovered TiN/SiN(001) superlattices depo...
The phase stability and mechanical properties of wurtzite (w)-Zr$_{0.25}$Al$_{0.75}$N/cubic (c)-TiN ...
The phase stability and mechanical properties of wurtzite (w)-Zr$_{0.25}$Al$_{0.75}$N/cubic (c)-TiN ...
Ferroelectric thin films of wurtzite-type aluminum scandium nitride (Al1-xScxN) are promising candid...
Ferroelectric thin films of wurtzite-type aluminum scandium nitride (Al1-xScxN) are promising candid...
High hardness TiAlN alloys for wear-resistant coatings exhibit limited lifetimes at elevated tempera...
High hardness TiAlN alloys for wear-resistant coatings exhibit limited lifetimes at elevated tempera...
High hardness TiAlN alloys for wear-resistant coatings exhibit limited lifetimes at elevated tempera...
Since the 1960s, researchers exploring the potential of artificially-structured materials for applic...
Supersaturated (Ti,Al)N materials with face centered cubic (fcc) structure offer unique combinations...
The possibility of using metal/semiconductor superlattices for thermionic energy conversion and soli...
Wear resistant hard films comprised of cubic transition metal nitride (c-TMN) and metastable c-AlN w...
Wear resistant hard films comprised of cubic transition metal nitride (c-TMN) and metastable c-AlN w...
We report the layer structure and composition in recently discovered TiN/SiN(001) superlattices depo...
We report the layer structure and composition in recently discovered TiN/SiN(001) superlattices depo...
We report the layer structure and composition in recently discovered TiN/SiN(001) superlattices depo...
The phase stability and mechanical properties of wurtzite (w)-Zr$_{0.25}$Al$_{0.75}$N/cubic (c)-TiN ...
The phase stability and mechanical properties of wurtzite (w)-Zr$_{0.25}$Al$_{0.75}$N/cubic (c)-TiN ...
Ferroelectric thin films of wurtzite-type aluminum scandium nitride (Al1-xScxN) are promising candid...
Ferroelectric thin films of wurtzite-type aluminum scandium nitride (Al1-xScxN) are promising candid...