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Updated: Apr 10, 2026

Bulk and Thin Film Synthesis of Compositionally Variant Entropy-stabilized Oxides
Published on: May 29, 2018
Designing thin film materials - Ternary borides from first principles.
1Institute of Materials Science and Technology, Vienna University of Technology, 1040 Vienna, Austria.
This study introduces a computational approach for designing novel ternary diboride thin films. Researchers found that combining different binary diborides can create metastable materials with tunable properties for advanced applications.
Area of Science:
- Materials Science
- Computational Materials Science
- Thin Film Technology
Background:
- Aluminum nitride coatings exhibit exceptional properties.
- Understanding these properties can guide the design of new functional materials.
- Ternary diborides offer a promising class of materials for exploration.
Purpose of the Study:
- To develop a computational framework for designing functional thin film materials based on ternary diborides.
- To investigate the formation and properties of supersaturated metastable ternary systems.
- To explore the potential for phase transformation induced effects in these materials.
Main Methods:
- Utilizing ab initio calculations to explore material properties.
- Combining binary diborides with different structure types.
- Focusing on exemplary cases of M W1-x B2 (M = Al, Ti, V).
Main Results:
- Demonstrated the potential for creating supersaturated metastable ternary diboride systems.
- Showcased the experimental accessibility of ternary solid solutions using modern deposition techniques.
- Identified M W1-x B2 (M = Al, Ti, V) as viable candidates.
Conclusions:
- Ab initio calculations provide a reliable method for designing novel ternary diboride thin films.
- Metastable ternary diboride systems can be synthesized using current experimental methods.
- These findings pave the way for developing advanced functional thin film materials.
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