Unbipentium (Ubp)
SuperactinideMasse atomique relative standard
N/DConfiguration électronique
[Og] 5g⁵ 8s²Point de fusion
N/DPoint d’ébullition
N/DMasse volumique
N/DÉtats d’oxydation
N/DÉlectronégativité (Pauling)
N/DÉnergie d’ionisation (1re)
N/DAnnée de découverte
N/DRayon atomique
N/DUnbipentium is the temporary systematic name for the unconfirmed element with atomic number 125. It belongs to the predicted superheavy region beyond oganesson and is usually treated as an 8th-period superactinide rather than as a member of any experimentally known chemical family. No isotope, atom, or compound has been confirmed. Its expected chemistry is model-dependent because relativistic effects and closely spaced valence orbitals should be important.
This element has not been synthesized or experimentally confirmed. All listed physicochemical properties are calculated, extrapolated, or model-dependent.
No macroscopic sample of unbipentium exists, and even individual atoms have not been confirmed. Its color, density, melting point, and ordinary physical form are unknown; any description of a metallic appearance would be a theoretical extrapolation only.
Unbipentium has no confirmed practical, commercial, medical, or industrial use. Its only foreseeable role is in basic nuclear and chemical research, especially in tests of superheavy-element stability and models of shell structure. If atoms were produced, they would likely be studied one at a time through their decay chains or, if lifetimes allowed, by rapid gas-phase or surface-chemistry techniques.
No compound of unbipentium has been prepared or observed. Calculations place its valence region among superactinide-like shells, where 5g, 6f, 7d, and 8p orbitals may be close in energy. This makes simple periodic extrapolation unreliable. Possible oxidation states and bonding patterns remain predictions, and even likely formulas for halides, oxides, or organometallic species cannot be assigned with confidence from experiment.
The safety properties of unbipentium are not experimentally known. Any isotope produced would be radioactive, probably in quantities of single atoms and with isotope-specific decay modes and half-lives. The main credible hazard would be radiation associated with production and decay, not bulk chemical exposure. Chemical toxicity is unknown and cannot be assessed from observed materials.
There is no confirmed natural occurrence of unbipentium and no known environmental reservoir. Because no macroscopic amount has been made, environmental mobility, speciation, and biological uptake are unmeasured. If atoms were produced in a laboratory, they would be too few and too short-lived to define ordinary environmental behavior.
Unbipentium has no commodity market, no industrial supply chain, and no recoverable source. Production, if achieved, would require heavy-ion nuclear reactions using rare targets and intense accelerator beams, followed by detection of only a few atoms at most. The limiting factors are nuclear cross sections, target availability, detector time, and confirmation of decay chains rather than mining, refining, or conventional manufacturing cost. Recycling and substitution have no practical meaning for this element.
Unbipentium has not been detected in cosmic material. Very heavy nuclei may be transiently produced in extreme neutron-rich nucleosynthesis, but survival of element 125 to the present would require unusually long-lived isotopes that have not been demonstrated. Its astrophysical relevance is therefore theoretical.
- Unbipentium is a systematic placeholder name, not a discovery name.
- No isotope of element 125 has been confirmed.
- Predictions place it in the poorly tested superactinide region.
- Relativistic effects are expected to strongly affect its chemistry.
- Any future identification would depend on nuclear decay evidence rather than bulk isolation.
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Propriétés
Propriétés physiques
N/D
Propriétés chimiques
- Affinité électronique
- 0,4 eV
- Configuration électronique
- [Og] 5g⁵ 8s²
Propriétés thermodynamiques
N/D
Propriétés nucléaires
- Protons
- 125 Comparer : Protons de tous les éléments →
- Isotopes connus
- 0 Comparer : Isotopes connus de tous les éléments →
- Isotopes stables
- 0 Comparer : Isotopes stables de tous les éléments →
- Présence à l’état naturel
- Non observé
Abondance
N/D
Sécurité
- Radioactif
- Oui
Structure cristalline
N/D
Structure électronique
- Électrons par couche
- 2, 8, 18, 32, 37, 18, 8, 2 Comparer : Électrons par couche de tous les éléments →
Identifiants
- Numéro CAS
- 54576-76-0 Comparer : Numéro CAS de tous les éléments →
Configuration électronique Prédit
——Données de configuration électronique indisponibles pour cet ion.
Modèle atomique
Les isotopes diffèrent par leur nombre de neutrons, leur masse et leur stabilité — pas par la configuration électronique de l’atome neutre.
N/D
Modèle atomique schématique, non à l’échelle.
Empreinte atomique
Spectre d’émission / d’absorption
Distribution isotopique
Aucun isotope stable.
| Nombre de masse | Masse atomique (u) | Abondance naturelle | Demi-vie |
|---|
Phase / État
Données de phase ou d’état indisponibles
N/D
Données de phase ou d’état indisponibles