19 K 39.098

Potassium

Alkali metal Kalium solid

[Ar] 4s¹ · 2 · 8 · 8 · 1

An alkali metal no living cell works without. Potassium is reactive enough to ignite in damp air, and inside a neuron its ions together with sodium's build the action potential.

3D model

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

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Atomic properties

Atomic number
19
Atomic mass
39.098 а.е.м.
№101 / 118
Electron configuration
[Ar] 4s¹
Electrons per shell
2 · 8 · 8 · 1
Block
s-block
Group
Alkali metals
Period
4
Electronegativity (Pauling)
0.82
№98 / 100
Electronegativity (Allen)
0.73
Atomic radius
243 pm
№18 / 103
Covalent radius
203 pm
№11 / 118
Van der Waals radius
275 pm
Ionisation energy 1
418.8 kJ/mol
№115 / 118
Ionisation energy 2
3 052 kJ/mol
Ionisation energy 3
4 420 kJ/mol
Electron affinity
48.4 kJ/mol
№60 / 108
Common oxidation states
+1
Oxidation states
-1, +1

Physical properties

State at 25 °C
solid
Density
0.862 g/cm³
№106 / 118
Melting point
336.7 K · 63.6 °C
№90 / 111
Boiling point
1 032 K · 758.9 °C
№81 / 107
Speed of sound
2 000 m/s
№55 / 72

Thermal properties

Heat of fusion
2.33 kJ/mol
№83 / 98
Heat of vaporisation
76.9 kJ/mol
№76 / 98
Specific heat capacity
0.757 J/(g·K)
№14 / 95
Thermal conductivity
102.5 W/(m·K)
№17 / 96

Mechanical properties

Young's modulus
3.53 GPa
№68 / 70
Shear modulus
1.3 GPa
Bulk modulus
3.1 GPa
Poisson ratio
no data
Mohs hardness
0.4
№55 / 57
Brinell hardness
0.363 MPa

Electrical and magnetic properties

Electrical resistivity
72 nΩ·m
№68 / 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 = 532.8 pm

Abundance

In the crust
20 900 mg/kg
№8 / 88
In the ocean
399 mg/L
№8 / 78
In the universe
3 000 mg/kg
№21 / 83
In the human body
2 000 mg/kg
№8 / 40

Isotopes

Isotope Abundance Half-life Decay mode
39K 93.258 % stable
40K 0.0117 % 1.25 Gyr β−, ЭЗ
41K 6.73 % stable

Potassium-40 is radioactive with a 1.25-billion-year half-life and is present in every organism: a 70 kg human runs about 4400 potassium-40 decays per second.

Discovery

Year of discovery
1807
№77 / 108
Discovered by
Humphry Davy
Where
England
Origin of the name
from Arabic al-qalyah (plant ashes); the symbol K is from Latin kalium

History

Humphry Davy isolated potassium on 6 October 1807 by electrolysing molten caustic potash — the first metal ever obtained with an electric current. The symbol K is from Latin kalium, itself from the Arabic for plant ash.

Where it occurs

The seventh most abundant element in the crust at 20 900 mg/kg. The ores are sylvite and carnallite from ancient sea beds; the largest deposits are in Canada, Belarus and Russia.

How it is produced

Potash salts are mined and solution-mined and upgraded by flotation. The metal comes from reducing molten KCl with sodium.

Role in living things

The principal intracellular cation. The potassium gradient across a cell membrane creates the membrane potential; a sharp rise in blood potassium stops the heart.

Safety

The metal ignites in damp air and reacts explosively with water. Potassium salts given intravenously in large doses are lethal, which is one component of the American execution protocol.

Uses

  • Potash fertiliser — over 90 % of all production
  • Caustic potash for liquid soap and biodiesel
  • Potassium nitrate in black powder and as a preservative
  • Sodium–potassium alloy as a coolant, liquid at room temperature

Curiosities

  • A banana is faintly radioactive because of potassium-40 — the origin of the tongue-in-cheek banana equivalent dose.
  • Potassium decay supplies nearly all the argon in Earth's atmosphere.
  • Potassium burns with a violet flame.
  • Potassium was the first metal ever obtained by electrolysis, a week before sodium.

Position in the table

K