Bh 107

Bohrium (Bh)

transition-metal
周期: 7 族: 7 区: d

Solid

标准原子量

[270]

电子排布

[Rn] 7s2 5f14 6d5

熔点

暂无

沸点

暂无

密度

3.71e+4 kg/m³

氧化态

+3, +4, +5, +7

电负性(鲍林)

暂无

第一电离能

7.7 eV

发现年份

1976

原子半径

128 pm

详细信息

名称来源 Named in honor of Niels Bohr
发现国家 Germany
发现者 Heavy Ion Research Laboratory (HIRL)

Bohrium is a synthetic transactinide element in group 7, below rhenium. It has no stable isotopes and has been made only atom by atom in heavy-ion nuclear reactions or as decay products of heavier superheavy nuclei. Its chemistry is known from a small number of rapid experiments and is consistent with a very heavy group 7 metal, with the +7 state especially important. No natural role or technological use is known.

Bohrium does not occur naturally in the Earth’s crust. Bohrium was first synthesized by German scientists at the GSI Center for Heavy Ion Research in Darmstadt, Germany in 1981 using the nuclear reaction 209Bi (54Cr, n) 262Bh. The element is named for Niels Bohr (Fig. IUPAC.107.1), the Nobel Prize winning physicist [649], [650]. Bohrium has no known isotopic applications aside from scientific research.

Bohrium is named after Niels Bohr.

First produced in 1976 by scientists working at the Joint Institute for Nuclear Research in Dubna, Russia, and later confirmed in 1981 by Peter Armbruster, Gottfried Münzenber and their team working at the Gesellschaft für Schwerionenforschung in Darmstadt, Germany, bohrium was produced by bombarding a target of bismuth-209 with ions of chromium-54. Bohrium's most stable isotope, bohrium-270, has a half-life of about 1 minute. It decays into dubnium-266 through alpha decay.

Formally known as Ns, Nielsbohrium

In 1976 Soviet scientists at Dubna announced they had synthesized element 107 by bombarding 204Bi with heavy nuclei of 54Cr. Reports say that experiments in 1975 had allowed scientists "to glimpse" the new element for 2/1000 s. A rapidly rotating cylinder, coated with a thin layer of bismuth metal, was used as a target. This was bombarded by a stream of 54Cr ions fired tangentially.

The existence of element 107 was confirmed by a team of West German physicists at the Heavy Ion Research Laboratory at Darmstadt, who created and identified six nuclei of element 107.

图片

性质

物理性质

原子半径(经验值)
128 pm 比较所有元素的原子半径(经验值) →
密度
3.71 × 104 kg/m³ 比较所有元素的密度 →

化学性质

电子亲和能
0.44 eV
第一电离能
7.7 eV 比较所有元素的第一电离能 →
第二电离能
17.50006 eV 比较所有元素的第二电离能 →
第三电离能
26.700092 eV 比较所有元素的第三电离能 →
第四电离能
37.300128 eV 比较所有元素的第四电离能 →
第五电离能
49.000169 eV 比较所有元素的第五电离能 →
氧化态
+3, +4, +5, +7 比较所有元素的氧化态 →
价电子
7 比较所有元素的价电子 →
电子排布
[Rn] 7s2 5f14 6d5

热力学性质

暂无

核性质

质子
107 比较所有元素的质子 →
中子
163 比较所有元素的中子 →
已知同位素
19 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 →
质量数(最稳定同位素)
270
最稳定同位素
Bh-270
发现年份
1976

丰度

暂无

晶体结构

暂无

电子结构

各电子层电子数
2, 8, 18, 32, 32, 13, 2 比较所有元素的各电子层电子数 →

标识符

CAS登记号
54037-14-8 比较所有元素的CAS登记号 →
谱项符号
5/2
InChI
InChI=1S/Bh
InChI Key
INOXRQQPOOCQPH-UHFFFAOYSA-N

电子排布 预测值

离子电荷
质子 107
电子 107
电荷 中性
电子排布 Bh: 5f¹⁴ 6d⁵ 7s²
电子排布
预测值
[Rn] 5f¹⁴ 6d⁵ 7s²
1s² 2s² 2p⁶ 3s² 3p⁶ 3d¹⁰ 4s² 4p⁶ 4d¹⁰ 5s² 5p⁶ 4f¹⁴ 5d¹⁰ 6s² 6p⁶ 5f¹⁴ 6d⁵ 7s²
轨道图
1s
2/2
2s
2/2
2p
6/6
3s
2/2
3p
6/6
4s
2/2
3d
10/10
4p
6/6
5s
2/2
4d
10/10
5p
6/6
6s
2/2
4f
14/14
5d
10/10
6p
6/6
7s
2/2
5f
14/14
6d
5/10 5↑
电子总数: 107 未配对: 5 ?

原子模型

质子 107
中子 161
电子 107
质量数 268
稳定性 放射性

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。

原子模型示意图,未按比例绘制。

原子指纹

发射 / 吸收光谱

0 / 0 (0 0条具有强度数据)
实测值
发射 可见光:380–750 nm

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
263 放射性263.12292 ± 0.00033暂无200 ms
268 放射性268.12969 ± 0.00041暂无190 秒
262 放射性262.12297 ± 0.00033暂无84 ms
276 放射性276.149169 ± 0.000644暂无60 秒
274 放射性274.14355 ± 0.00065暂无57 秒
实测值

物相 / 状态

1 atm / 101.325 kPa 预测值
未知 25 °C (298.15 K)
0 K 当前温度: 25 °C 6000 K

暂无物相/状态数据

原子光谱

已显示10项,共96项。 按离子电荷升序排列。

收录能级 ?

离子电荷能级
Bh I 02
Bh II +12
Bh III +22
Bh IV +32
Bh V +42
Bh VI +52
Bh VII +62
Bh VIII +72
Bh IX +82
Bh X +92
NIST收录能级 →
107 Bh 270

Bohrium — 原子轨道可视化工具

[Rn]7s25f146d5
能级 2 8 18 32 32 13 2
氧化态 +3, +4, +5, +7
HOMO 6d n=6 · l=2 · m=-2
Bohrium — 原子轨道可视化预览
Three.js仅在需要时加载
107 Bh 270

Bohrium — 晶体结构可视化工具

暂无物相/状态数据

化合物

Bh
270.133 u

同位素 (5)

质量数原子质量(u)天然丰度半衰期衰变方式
263 放射性263.12292 ± 0.00033暂无200 ms
α ?
268 放射性268.12969 ± 0.00041暂无190 秒
α ?SF ?
262 放射性262.12297 ± 0.00033暂无84 ms
α ≈100%SF<20%
276 放射性276.149169 ± 0.000644暂无60 秒
α ?SF ?
274 放射性274.14355 ± 0.00065暂无57 秒
α =100%
263 放射性
原子质量(u) 263.12292 ± 0.00033
天然丰度 暂无
半衰期 200 ms
衰变方式
α ?
268 放射性
原子质量(u) 268.12969 ± 0.00041
天然丰度 暂无
半衰期 190 秒
衰变方式
α ?SF ?
262 放射性
原子质量(u) 262.12297 ± 0.00033
天然丰度 暂无
半衰期 84 ms
衰变方式
α ≈100%SF<20%
276 放射性
原子质量(u) 276.149169 ± 0.000644
天然丰度 暂无
半衰期 60 秒
衰变方式
α ?SF ?
274 放射性
原子质量(u) 274.14355 ± 0.00065
天然丰度 暂无
半衰期 57 秒
衰变方式
α =100%

扩展性质

共价半径(扩展)

共价半径(Pyykkö)
141 pm
共价半径(Pyykkö,双键)
128 pm
共价半径(Pyykkö,三键)
119 pm

编号标度

Mendeleev
58

极化率与色散

偶极极化率
38 a.u.
偶极极化率(不确定度)
4 a.u.

氧化态分类

+4 extended
+5 extended
+3 extended
+7 extended

高级参考数据

同位素衰变方式 (32)
同位素模式强度
260A100%
260B+—
260SF—
261A100%
261SF—
262A100%
262SF20%
263A—
264A86%
264SF14%

补充数据

参考文献

(8)
2 Atomic Mass Data Center (AMDC), International Atomic Energy Agency (IAEA)
Bh

The half-life and atomic mass data was provided by the Atomic Mass Data Center at the International Atomic Energy Agency.

3 IUPAC Commission on Isotopic Abundances and Atomic Weights (CIAAW)
Bohrium

Element data are cited from the Atomic weights of the elements (an IUPAC Technical Report). The IUPAC periodic table of elements can be found at https://iupac.org/what-we-do/periodic-table-of-elements/. Additional information can be found within IUPAC publication doi:10.1515/pac-2015-0703 Copyright © 2020 International Union of Pure and Applied Chemistry.

4 IUPAC Periodic Table of the Elements and Isotopes (IPTEI)

The information are cited from Pure Appl. Chem. 2018; 90(12): 1833-2092, https://doi.org/10.1515/pac-2015-0703.

许可证说明: Copyright (c) 2020 International Union of Pure and Applied Chemistry. The International Union of Pure and Applied Chemistry (IUPAC) contribution within Pubchem is provided under a CC-BY-NC-ND 4.0 license, unless otherwise stated.
5 Jefferson Lab, U.S. Department of Energy
Bohrium

Thomas Jefferson National Accelerator Facility (Jefferson Lab) is one of 17 national laboratories funded by the U.S. Department of Energy. The lab's primary mission is to conduct basic research of the atom's nucleus using the lab's unique particle accelerator, known as the Continuous Electron Beam Accelerator Facility (CEBAF). For more information visit https://www.jlab.org/

许可证说明: Please see citation and linking information: https://education.jlab.org/faq/index.html
6 Los Alamos National Laboratory, U.S. Department of Energy
Bohrium

The periodic table at the LANL (Los Alamos National Laboratory) contains basic element information together with the history, source, properties, use, handling and more. The provenance data may be found from the link under the source name.

7 NIST Physical Measurement Laboratory
Bohrium

The periodic table contains NIST's critically-evaluated data on atomic properties of the elements. The provenance data that include data for atomic spectroscopy, X-ray and gamma ray, radiation dosimetry, nuclear physics, and condensed matter physics may be found from the link under the source name. Ref: https://www.nist.gov/pml/atomic-spectra-database

8 PubChem Elements
Bohrium

This section provides all form of data related to element Bohrium.

最后更新:

数据已核实:

内容已依据最新科学数据进行审核。