Structural morphologies of high-pressure polymorphs of strontium hydrides.
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Summary
It is shown from theoretical calculations that the electronegativity of molecular hydrogen is similar to that of group 13 and 14 elements, which resulted in electrons being transferred from Sr to the hydrogen molecules.
- Type
- article
- Published
- 2015-07-15
- Cited by
- 30
- References
- 72
- OpenAlex
- https://openalex.org/W1841242412
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:10610855
Keywords
Monatomic ion, Electronegativity, Chemical physics, Valence electron, Molecule
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- Structure and superconductivity of hydrides at high pressures
- Hydrides of the Alkali Metals and Alkaline Earth Metals Under Pressure
- Superconductivity in Hydrides Doped with Main Group Elements Under Pressure
- Superconducting Hydrogen Sulfide.
- High Hydrides of Scandium under Pressure: Potential Superconductors
- Pressure-induced superconducting ternary hydride H3SXe: A theoretical investigation
- New Calcium Hydrides with Mixed Atomic and Molecular Hydrogen
- High-temperature superconductivity in alkaline and rare earth polyhydrides at high pressure: A theoretical perspective.
- A chemical perspective on high pressure crystal structures and properties
- A perspective on conventional high-temperature superconductors at high pressure: Methods and materials
- Chemistry under high pressure
- Chemical templates that assemble the metal superhydrides
- High-throughput discovery of high-temperature conventional superconductors
- Design Principles for High-Temperature Superconductors with a Hydrogen-Based Alloy Backbone at Moderate Pressure.
- Compressed superhydrides: the road to room temperature superconductivity
- Sr‐Doped Superionic Hydrogen Glass: Synthesis and Properties of SrH22
- Materials under high pressure: a chemical perspective
- High Tc superconductivity in layered hydrides XH15 (X = Ca, Sr, Y, La) under high pressures
- Strategies for improving the superconductivity of hydrides under high pressure
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