9 F 18.998

Fluorine

Reactive nonmetal Fluorum gas

[He] 2s² 2p⁵ · 2 · 7

The most electronegative and most reactive element in the table. Fluorine takes electrons from anything: water, glass and asbestos burn in a stream of it, and several chemists died trying to isolate it.

3D model

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

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Atomic properties

Atomic number
9
Atomic mass
18.998 а.е.м.
№110 / 118
Electron configuration
[He] 2s² 2p⁵
Electrons per shell
2 · 7
Block
p-block
Group
Halogens
Period
2
Electronegativity (Pauling)
3.98
№1 / 100
Electronegativity (Allen)
4.19
Atomic radius
42 pm
№101 / 103
Covalent radius
57 pm
№116 / 118
Van der Waals radius
147 pm
Ionisation energy 1
1 681 kJ/mol
№3 / 118
Ionisation energy 2
3 374.2 kJ/mol
Ionisation energy 3
6 050.4 kJ/mol
Ionisation energy 4
8 407.7 kJ/mol
Ionisation energy 5
11 023 kJ/mol
Electron affinity
328 kJ/mol
№2 / 108
Common oxidation states
-1
Oxidation states
-1

Physical properties

State at 25 °C
gas
Density
0.0017 g/cm³
№113 / 118
Melting point
53.48 K · -219.7 °C
№108 / 111
Boiling point
85.03 K · -188.1 °C
№103 / 107
Speed of sound
no data

Thermal properties

Heat of fusion
0.51 kJ/mol
№94 / 98
Heat of vaporisation
6.62 kJ/mol
№93 / 98
Specific heat capacity
0.824 J/(g·K)
№12 / 95
Thermal conductivity
0.0277 W/(m·K)
№89 / 96

Mechanical properties

Young's modulus
no data
Shear modulus
no data
Bulk modulus
no data
Poisson ratio
no data
Mohs hardness
no data
Brinell hardness
no data

Electrical and magnetic properties

Electrical resistivity
no data
Magnetic ordering
diamagnetic
Curie point
no data
Néel point
no data
Superconducting point
no data

Crystal structure

Crystal structure
monoclinic
Lattice constants
a = 550 pm · b = 328 pm · c = 728 pm

Abundance

In the crust
585 mg/kg
№13 / 88
In the ocean
1.3 mg/L
№14 / 78
In the universe
400 mg/kg
№25 / 83
In the human body
37 mg/kg
№14 / 40

Isotopes

Isotope Abundance Half-life Decay mode
19F 100 % stable

Fluorine-19 is the only stable isotope, which makes ¹⁹F NMR an exceptionally clean technique. Fluorine-18, with a 110-minute half-life, is the workhorse label in PET imaging.

Discovery

Year of discovery
1886
№46 / 108
Discovered by
Henri Moissan
Where
France
Origin of the name
from Latin fluere (to flow): fluorspar was used as a smelting flux

History

Fluorspar had been used as a smelting flux since the sixteenth century, but the element itself yielded only to Henri Moissan in 1886, by electrolysis of anhydrous HF at −50 °C. It won him the 1906 Nobel Prize.

Where it occurs

The thirteenth most abundant element in the crust at 585 mg/kg. The main minerals are fluorite, cryolite and fluorapatite.

How it is produced

Only by electrolysis of molten KF·2HF: no chemical oxidiser is stronger than fluorine, so no displacement reaction can make it.

Role in living things

The fluoride ion builds into tooth enamel, turning hydroxyapatite into the markedly more acid-resistant fluorapatite. Beyond that, whether humans need fluorine at all is disputed.

Safety

Fluorine gas is lethal at tens of parts per million. Hydrofluoric acid is treacherous in a different way: it causes little immediate pain but soaks through skin and strips calcium from the blood, stopping the heart.

Uses

  • Uranium hexafluoride for isotope separation in the nuclear industry
  • Fluoropolymers, above all PTFE: chemically inert and low-friction
  • Fluorocarbon refrigerants and blowing agents
  • Fluoridation of drinking water and toothpaste against tooth decay
  • Plasma etching of silicon in chip manufacture

Curiosities

  • Fluorine tops the Pauling electronegativity scale at exactly 3.98 — nothing goes higher.
  • PTFE was discovered by accident in 1938: gas in a cylinder had polymerised itself into a white powder.
  • Fluorine is the only element that reacts with xenon under ordinary conditions.
  • Early attempts to isolate fluorine cost several researchers their health or their lives; they are remembered as the fluorine martyrs.

Position in the table

F