55 Cs 132.905

Caesium

Alkali metal Caesium solid

[Xe] 6s¹ · 2 · 8 · 18 · 18 · 8 · 1

The most electropositive stable element and the softest metal: caesium melts in your hand at 28 °C. The SI second is defined by a transition frequency in the caesium-133 atom.

3D model

Bohr model: nucleus and electron shells from the real configuration. Valence electrons are highlighted.

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Atomic properties

Atomic number
55
Atomic mass
132.905 а.е.м.
№64 / 118
Electron configuration
[Xe] 6s¹
Electrons per shell
2 · 8 · 18 · 18 · 8 · 1
Block
s-block
Group
Alkali metals
Period
6
Electronegativity (Pauling)
0.79
№100 / 100
Electronegativity (Allen)
0.66
Atomic radius
298 pm
№2 / 103
Covalent radius
244 pm
№2 / 118
Van der Waals radius
343 pm
Ionisation energy 1
375.7 kJ/mol
№118 / 118
Ionisation energy 2
2 234.3 kJ/mol
Ionisation energy 3
3 400 kJ/mol
Electron affinity
45.5 kJ/mol
№65 / 108
Common oxidation states
+1
Oxidation states
-1, +1

Physical properties

State at 25 °C
solid
Density
1.93 g/cm³
№98 / 118
Melting point
301.7 K · 28.6 °C
№95 / 111
Boiling point
944 K · 670.9 °C
№85 / 107
Speed of sound
no data

Thermal properties

Heat of fusion
2.09 kJ/mol
№87 / 98
Heat of vaporisation
63.9 kJ/mol
№79 / 98
Specific heat capacity
0.242 J/(g·K)
№45 / 95
Thermal conductivity
35.9 W/(m·K)
№41 / 96

Mechanical properties

Young's modulus
1.7 GPa
№70 / 70
Shear modulus
no data
Bulk modulus
1.6 GPa
Poisson ratio
no data
Mohs hardness
0.2
№57 / 57
Brinell hardness
0.14 MPa

Electrical and magnetic properties

Electrical resistivity
205 nΩ·m
№48 / 84
Magnetic ordering
paramagnetic
Curie point
no data
Néel point
no data
Superconducting point
no data

Crystal structure

Crystal structure
body-centred cubic (bcc)
Lattice constants
a = 614.1 pm

Abundance

In the crust
mg/kg
№47 / 88
In the ocean
0.0003 mg/L
№32 / 78
In the universe
0.008 mg/kg
№66 / 83
In the human body
0.02 mg/kg
№35 / 40

Isotopes

Isotope Abundance Half-life Decay mode
133Cs 100 % stable
137Cs 30.07 yr β−

Caesium-133 is the only stable isotope and the basis of the second: 9 192 631 770 periods of the radiation from its hyperfine transition.

Discovery

Year of discovery
1860
№60 / 108
Discovered by
Robert Bunsen and Gustav Kirchhoff
Where
Germany
Origin of the name
from Latin caesius (sky blue), after two blue spectral lines

History

Bunsen and Kirchhoff discovered caesium in 1860 while studying the spectrum of Dürkheim mineral water — the first element ever found by spectral analysis. Two bright blue lines gave the name, from the Latin for sky blue.

Where it occurs

3 mg/kg of the crust. The only commercial mineral is pollucite, and virtually all world production comes from the single Tanco mine in Canada.

How it is produced

From pollucite via the chloride, then calcium reduction in vacuum. World output is measured in tonnes.

Role in living things

No biological role. The body treats caesium as potassium and distributes it through muscle.

Safety

The metal explodes on contact with water — even with ice at −116 °C. Caesium-137 from Chernobyl and Fukushima fallout is the principal long-lived soil contaminant.

Uses

  • Atomic clocks: the caesium standard defines the second and disciplines GPS
  • Caesium formate heavy drilling fluids — a brine denser than most metals
  • Photocells and low-work-function cathodes
  • Caesium-137 in industrial radiography and radiotherapy

Curiosities

  • The SI second is defined by caesium: since 1967 time has been measured by an atom, not by the Earth's rotation.
  • Caesium is the most electropositive element you can hold; francium is formally stronger but cannot be made in weighable amounts.
  • Caesium-137, half-life 30 years, remains the central problem of the Chernobyl exclusion zone.
  • A caesium atomic clock drifts by a second in roughly 30 million years.

Position in the table

Cs