Meitnerium
not relevantMeitnerium has no water story: fewer than ten atoms have ever been made, so it has no measurable occurrence in water, no guideline and no treatment role.
1 · Identity
- Symbol, number
- Mt, 109
- Oxidation states in water
- not given in the book entry
- Note
- Identity from the book entry; nothing measured in water.
Sources
Identity
- Name and symbol
- Meitnerium, Mt
- Atomic number
- 109 protons
- Position
- group 9 · period 7 · d-block · unknown, probably transition metal
- CAS number
- 54038-01-6
Atomic structure
- Atomic mass
- 278 u
- Electron configuration
- 1s² 2s² 2p⁶ 3s² 3p⁶ 4s² 3d¹⁰ 4p⁶ 5s² 4d¹⁰ 5p⁶ 6s² 4f¹⁴ 5d¹⁰ 6p⁶ 7s² 5f¹⁴ 6d⁷
[Rn] 7s²⁵f¹⁴⁶d⁷(calculated) - Electrons per shell
- 2, 8, 18, 32, 32, 15, 2
- Valence electrons
- 9 ns and (n-1)d
| nuclide | half-life | decay |
|---|---|---|
| 279Mt | 20 s [Estimated] | α ?; SF ? |
| 280Mt | 10 s [Estimated] | α ?; SF ? |
| 277Mt | 9 s | SF=100%; α ? |
| 276Mtm | 7 s | α=100% |
Physical properties
- State at room temperature
- Solid
- Melting point
- not in sources
- Boiling point
- not in sources
- Density
- not in sources
- Appearance
- not in sources
- Thermal conductivity
- not in sources
- Electrical resistivity
- not in sources
- Electrical conductivity
- not in sources
- Crystal structure
- face-centered cubic
- Molar heat capacity
- not in sources
Chemical properties
- Oxidation states
- 9, 8, 6, 4, 3, 1 (predicted)
- Electronegativity
- not in sources
- Ionisation energy
- not in sources
- Electron affinity
- not in sources
- Atomic radius
- not in sources
- Ionic radius
- not in sources
- Reactivity
- A group 9 transactinide made a few atoms at a time; it is the first element whose chemistry has not been investigated at all, its short-lived isotopes and lack of a suitably volatile compound having so far prevented any experiment.
- with water
- Not known; no experiment has been reported.
- with oxygen, air
- Not known; no experiment has been reported.
- with acids
- Not known; no experiment has been reported.
- with halogens
- Not known; no experiment has been reported.
- Typical compounds
- not in sources
Occurrence, production and use
- Crustal abundance
- Not Applicable
- Oceanic abundance
- Not Applicable
- Occurrence and sources
- synthetic only bismuth bombarded with iron atoms
- Extraction, production
- not in sources
- Uses
Since only small amounts of meitnerium have ever been produced, it currently has no uses outside of basic scientific research.
- Safety, toxicity
- not in sources
Discovery and name
- Discovered by
- Gesellschaft für Schwerionenforschung
- Discovered
- 1982
- First isolated
- not in sources
- Named by
- not in sources
- Origin of the name
- after Lise Meitner
Meitnerium does not occur naturally in the Earth’s crust. Meitnerium was first synthesized by German scientists at the GSI Center for Heavy Ion Research in Darmstadt, Germany in 1984 using the nuclear reaction 209Bi (58Fe, n) 266MtHs. The element is named for the physicist, Lise Meitner (Fig. IUPAC.109.1), who discovered the element protactinium [653], [655]. Meitnerium is used only for scientific research.
Meitnerium is named after Lise Meitner.
Conventions
Valence electrons are counted by the usual convention: the outer shell for s- and p-block elements, ns and (n-1)d for the d-block, ns, (n-1)d and (n-2)f for the f-block. Lanthanides and actinides are placed in the f-block with no group number. Electrical conductivity is the reciprocal of the printed resistivity. Ionic radii are Shannon effective radii, six-coordinate unless noted. Where a field reads “not in sources” the value was not found; it is a gap, not a zero. Regulatory limits are the published values and change often, so check the standard in force at your site and the numbers written into your own permit before you design to them.
Data
Element records, isotopes, radii and the descriptive text come from PubChem (NCBI), the Los Alamos National Laboratory periodic table, IUPAC CIAAW and the IAEA Atomic Mass Data Center. Appearance, thermal conductivity, electrical resistivity, crystal structure, discovery and the origin of each name come from Wikipedia and Periodic-Table-JSON, used under CC BY-SA 4.0. Hazard classifications come from the ECHA C&L inventory via PubChem. Ionic radii follow R. D. Shannon (1976). The water chapters cite their own sources at the foot of each entry, and are written to the level of Snoeyink and Jenkins, Stumm and Morgan, MWH's Water Treatment and Metcalf and Eddy.