Tc max
248.0 K
Tc ambient
—
arXiv year
2021
Papers
2
Tc exp.
—
Tc theo.
248.0 K
Evidence
theoretical
Tc max measured at theoretical (DFT/computational), P=100 GPa, arXiv:2105.02296, confirmed by 2 papers
Evidence (2 records from 2 papers)
the flat columns above are aggregates — each line here is one paper's claim| Tc (K) | P (GPa) | Sample | Method | Pairing | Year | Tier | Paper |
|---|---|---|---|---|---|---|---|
| 248.0 | 100.0 | — | — | — | 2021 | — | 2105.02296 |
| 248.0 | 100.0 | — | — | — | 2021 | T1 | DOI: 10.1103/PhysRevB.104.054501 |
Hydride Tc parameters (12)
independent NER enrichment for pressure, λ, μ*, and ω_log| Formula | Tc (K) | P (GPa) | λ | μ* | ω_log (K) | Method | Year | Paper |
|---|---|---|---|---|---|---|---|---|
| NaH6 | 279.0 | 100.0 | — | — | — | DFT | 2023 | 2301.12320 |
| NaH6 | 279.0 | 100.0 | — | — | — | DFT | 2023 | DOI: 10.1103/PhysRevB.107.L180501 |
| NaH6 | 263.5 | 100.0 | — | — | — | DFT | 2021 | 2105.02296 |
| NaH6 | 263.5 | 100.0 | 2.54 | — | 1252 | Eliashberg | 2021 | DOI: 10.1103/PhysRevB.104.054501 |
| NaH6 | 204.0 | 100.0 | — | — | — | DFT | 2023 | 2312.12694 |
| NaH6 | 274.0 | 200.0 | 2.06 | — | — | Eliashberg | 2021 | DOI: 10.1103/PhysRevB.104.054501 |
| NaH6 | 225.0 | 200.0 | — | — | — | DFT | 2023 | 2312.12694 |
| NaH6 | 92.0 | 200.0 | 2.95 | 0.10 | 516 | McMillan-Allen-Dynes | 2023 | DOI: 10.1103/PhysRevMaterials.7.054806 |
| NaH6 | 77.0 | 200.0 | — | 0.10 | — | McMillan-Allen-Dynes | 2022 | 2205.02554 |
| NaH6 | 234.0 | 300.0 | — | — | — | DFT | 2023 | 2312.12694 |
| NaH6 | 282.0 | 500.0 | — | — | — | DFT | 2023 | 2312.12694 |
| NaH6 | 242.0 | 500.0 | — | — | — | DFT | 2023 | 2312.12694 |
Superconducting parameters
- λ_eph (e–ph coupling)
- —