Unbihexium (Ubh)
Superactinide标准原子量
暂无电子排布
[Og] 5g⁶ 8s²熔点
暂无沸点
暂无密度
暂无氧化态
暂无电负性(鲍林)
暂无第一电离能
暂无发现年份
暂无原子半径
暂无Unbihexium is the temporary systematic name for the undiscovered element with atomic number 126. It lies in the predicted superheavy region beyond the known periodic table. No isotope has been confirmed, and all chemical and physical properties are theoretical. Nuclear models have treated Z=126 as a possible shell-related number, but predicted stability depends strongly on neutron number and on the model used.
This element has not been synthesized or experimentally confirmed. All listed physicochemical properties are calculated, extrapolated, or model-dependent.
No macroscopic sample of unbihexium exists, and no atoms have been confirmed. Its color, density, melting point, crystal structure, and other bulk properties are unknown. Any description of its appearance would be a prediction only.
Unbihexium has no confirmed practical, commercial, medical, or industrial use. If atoms were produced, they would be used only in nuclear-physics research, chiefly to test models of superheavy nuclei, shell effects, and decay modes. Chemical study would require atom-at-a-time methods, and even that depends on isotopes living long enough to be transported and detected.
No compound of unbihexium has been synthesized or observed. Its chemistry is expected to be strongly affected by relativistic electron behavior and by the placement of element 126 among the predicted superactinides or g-block elements. Calculations may examine possible oxides, halides, or high oxidation states as model systems, but no oxidation state, bonding pattern, or formula has experimental confirmation.
The safety properties of unbihexium are not experimentally known. Any isotope would be radioactive, but isotope-specific half-lives and decay modes have not been measured because no isotope is confirmed. In a laboratory synthesis attempt, the practical hazards would come mainly from accelerator operations, radioactive targets, activation products, and any produced atoms as radiological materials.
Unbihexium has no confirmed natural occurrence and no known environmental cycle. If produced artificially, it would be made in extremely small numbers of atoms and would decay rather than persist as a chemical contaminant. Its mobility, speciation, and ecological behavior are therefore unknown and cannot be inferred from direct observation.
Unbihexium has no commodity market, no industrial demand, and no supply chain. Production, if achieved, would require specialized heavy-ion accelerator experiments using rare target and projectile combinations, with expected yields at the atom-at-a-time level. The limiting factors are nuclear reaction probability, target availability, detector sensitivity, and the lifetime of the product nuclei, not conventional mining or refining economics.
No unbihexium has been detected in nature, meteorites, stellar spectra, or cosmic rays. Very heavy nuclei near this region might be formed fleetingly in extreme neutron-rich events, but survival to the present would require unusually long-lived isotopes that are not known. Its cosmic abundance, if any, is therefore unconfirmed and likely extremely low.
- Unbihexium is an IUPAC systematic temporary name, not a discovery name.
- No isotope of element 126 has been confirmed experimentally.
- Z=126 has been discussed as a possible proton shell closure in some nuclear models.
- All proposed chemical behavior for unbihexium is theoretical.
- Any future study would probably begin with single-atom nuclear detection, not bulk chemistry.
图片

性质
物理性质
暂无
化学性质
- 电子亲和能
- 0.5 eV
- 电子排布
- [Og] 5g⁶ 8s²
热力学性质
暂无
核性质
- 质子
- 126 比较所有元素的质子 →
- 已知同位素
- 0 比较所有元素的已知同位素 →
- 稳定同位素
- 0 比较所有元素的稳定同位素 →
- 天然存在形式
- 未观测到
丰度
暂无
安全
- 放射性
- 是
晶体结构
暂无
电子结构
- 各电子层电子数
- 2, 8, 18, 32, 38, 18, 8, 2 比较所有元素的各电子层电子数 →
标识符
- CAS登记号
- 54576-77-1 比较所有元素的CAS登记号 →
电子排布 预测值
——暂无该离子的电子排布数据。
原子模型
不同同位素的中子数、质量和稳定性不同,但中性原子的电子排布不变。
暂无
原子模型示意图,未按比例绘制。
原子指纹
发射 / 吸收光谱
同位素分布
无稳定同位素。
| 质量数 | 原子质量(u) | 天然丰度 | 半衰期 |
|---|
物相 / 状态
暂无物相/状态数据
暂无
暂无物相/状态数据