Chemical element · reference page
65Tb

Terbium

Terbium is element 65 (Tb), located in period 6, group — and the f block. At room temperature its reference phase is solid. Its electron configuration is [Xe] 4f9 6s2.

Atomic number65
Standard atomic weight158.925354(7)
Group
Period6
Blockf
Electron configuration[Xe] 4f9 6s2
Electronic structure

What controls its chemistry

The lanthanides are characterised by filling of the 4f subshell. Their chemistry is often dominated by the +3 oxidation state, while partially filled f orbitals give many members useful magnetic and optical properties.

Because the 4f electrons are relatively shielded, neighbouring lanthanides have very similar chemical behaviour. Separating them from one another is therefore much harder than separating elements from different main groups.

Chemical forms

Compounds, ions and materials

Lanthanides are commonly encountered as +3 ions in oxides, halides and coordination compounds. Their compounds often have closely related chemistry, while differences in f-electron structure create distinctive magnetic and luminescent behaviour.

Physical behaviour

State and phase changes

The reference phase at room temperature is solid. The listed density is 8.23 g/cm³. The melting point is 1 624 K (1 351 °C). The boiling point is 3 396 K (3 123 °C). Pressure, purity and crystal structure can shift measured physical properties.

Occurrence and applications

Where terbium is found and used

In practice, terbium is encountered in phosphors, magnets and fuel-cell materials.

In practice

Examples of real uses

Phosphors

Terbium is used in luminescent materials that absorb energy and emit visible light at characteristic wavelengths.

Magnets

Terbium is used in magnetic materials where strong, stable or temperature-resistant magnetism is required.

Fuel-cell materials

Terbium is used in electrodes, electrolytes or catalytic materials in specialised fuel-cell systems.

Periodic position

What its neighbours tell us

Terbium is in period 6. In the f-block sequence shown here, it appears between gadolinium and dysprosium. This sequence allows a direct comparison with the neighbouring f-block elements.

Reference data

Physical and atomic properties

Classificationlanthanide
Phase at room temperatureSolid
Electron shells2 · 8 · 18 · 27 · 8 · 2
Density8.23 g/cm³
Melting point1 624 K (1 351 °C)
Boiling point3 396 K (3 123 °C)
Pauling electronegativity
First ionisation energy565.8 kJ/mol
Electron affinity112.4 kJ/mol

Values describe the element or neutral atom where applicable. Physical data can depend on allotrope, pressure and measurement conditions.

History

Discovery and identification

The discovery of terbium is associated with Carl Gustaf Mosander. Recognition of the element, isolation of a pure sample and assignment of its modern atomic number did not necessarily occur at the same time.

Isotopes and atomic weight

How isotope composition changes the numbers

The standard atomic weight is 158.925354(7). This value refers to the isotopic composition of natural terrestrial material, not to the mass of one specific atom.

Terbium has at least one stable isotope. Different isotopes have the same number of protons and therefore the same element identity, but different neutron numbers and atomic masses.

Safety

Handling and exposure

The hazards associated with terbium depend on chemical form, dose and route of exposure. Pure terbium, its ions and its compounds can have very different biological and environmental effects, so safety data should be checked for the actual substance being handled.