The crystal structure and the equation of state of thorium nitride for pressures up to 47 GPa
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- Type
- article
- Published
- 1985-10-01
- Cited by
- 42
- References
- 0
- OpenAlex
- https://openalex.org/W1992080618
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:95540319
Keywords
Diamond anvil cell, Bulk modulus, Synchrotron radiation, Diffraction, Equation of state
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Cited by
- Quantum mechanical studies of the early actinide compounds
- Rare-earth mononitrides
- Electronic structure, chemical bonding and elastic properties of the first thorium‐containing nitride perovskite TaThN3
- Ab initio studies of Th3N4, Th2N3 and Th2N2(NH)
- First-principle study of B1-like thorium carbide, nitride and oxide
- Ab initio study of elastic and electronic properties of cubic thorium pnictides ThPn and Th3Pn4 (Pn = P, As, and Sb)
- Electronic structures, mechanical and thermodynamic properties of ThN from first-principles calculations
- Structural data of the actinide elements and of their binary compounds with non-metallic elements
- Ion-core model of actinide metals and semi-metallic compounds
- Electronic structure, properties, and phase stability of inorganic crystals: A pseudopotential plane‐wave study
- High-pressure studies of uranium and thorium compounds using synchrotron radiation
- GGA + U studies of the early actinide mononitrides and dinitrides
- Actinide compounds under pressure
- Response to the comment of G.H. Shaw
- Structural phase transition and elastic properties of thorium pnictides at high pressure
- High-pressure study of binary thorium compounds from first principles theory and comparisons with experiment.
- An investigation on the structural transition and stability of some actinide nitrides under pressure
- Thermal and elastic properties of thorium pnictides under high pressure
- Structural Phase Transition and Elastic Properties of Thorium Pnictides at High Pressure
- Exploring Actinide Materials Through Synchrotron Radiation Techniques
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