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F2 Lewis Structure

Fluorine (difluorine) · The most reactive element, used to make refrigerants and uranium hexafluoride.

Lewis structure of F2 (Fluorine)Both atoms are F, so the bonding electrons are shared evenly and there is no dipole at all.FF

The F2 Lewis structure has 14 valence electrons, drawn as one F–F bond, with six lone pairs in total. The central F is sp3 hybridized and the molecule is linear. F2 is nonpolar: both atoms are F, so the bonding electrons are shared evenly and there is no dipole at all.

Calculated properties

Calculated properties of F2
Total valence electrons 14
Bonding electrons 2 (1 shared pairs)
Nonbonding electrons 12 (6 lone pairs)
Electron domains (steric number) 4
VSEPR notation AX1E3
Electron geometry tetrahedral
Molecular geometry linear
Bond angle no angle (only two atoms)
Hybridization sp3
Polarity nonpolar
Formal charges all zero
Resonance structures none
Molar mass 37.996 g/mol

How to draw the F2 Lewis structure

  1. Count the valence electrons

    Add up the outer-shell electrons every atom brings. That total is the budget for the whole structure - every line and every dot has to come out of it, and nothing may be added.

    2 x 7 (F) = 14 valence electrons
  2. Work out what is bonded to what

    Two atoms, one connection. The only question is the bond order.

  3. Join everything with single bonds first

    Every connection starts as one shared pair. Draw them all before worrying about double bonds - the arithmetic in the next step is what tells you where the double bonds have to go.

    1 bond x 2 = 2 electrons used, 12 left
  4. Work out how far short you are

    Add up what every atom still needs to fill its shell - eight electrons for most atoms, two for hydrogen - minus what its single bonds already give it. Compare that with the electrons you have left. The difference decides everything that follows.

    needs 12, has 12, exactly enough
  5. Fill in the lone pairs

    Every electron not in a bond sits as a lone pair on an atom. Each atom takes exactly what it needs to finish its shell - there is no choice left at this point.

    F1: 3, F2: 3 (12 electrons)
  6. Check the formal charges

    Formal charge is valence electrons, minus lone-pair electrons, minus the number of bonds. Every atom here comes out at zero, which is the sign of a good structure.

    all formal charges = 0
  7. Work out the shape

    Count the electron domains on F: 1 bonded group plus 3 lone pairs. A double or triple bond still counts as one domain, because it points in one direction. That gives tetrahedral electron geometry; ignore the lone pairs and the atoms themselves sit in a linear arrangement. Two atoms can only lie in a straight line, so there is no bond angle to measure.

    steric number 4 -> sp3 -> linear
  8. Decide whether it is polar

    Both atoms are F, so the bonding electrons are shared evenly and there is no dipole at all.

    dipoles cancel -> nonpolar

Is F2 polar or nonpolar?

F2 is nonpolar. Both atoms are F, so the bonding electrons are shared evenly and there is no dipole at all.

BondElectronegativity differenceCharacter
F–F 0.00 nonpolar covalent
Why this molecule gets set as a problem: The weakest single bond among the halogens, despite fluorine being the most electronegative element.

Common questions

How many valence electrons does F2 have?

F2 has 14 valence electrons. 2 of them are in bonds and 12 sit in lone pairs.

What is the molecular geometry of F2?

F2 is a linear molecule. The central F has 1 bonded group and three lone pairs, a steric number of 4, which gives tetrahedral electron geometry and a linear molecule.

What is the hybridization of F2?

The central F in F2 is sp3 hybridized. Steric number 4 means 4 orbitals have to be mixed, which is exactly what sp3 gives you.

Is F2 polar or nonpolar?

F2 is nonpolar. Both atoms are F, so the bonding electrons are shared evenly and there is no dipole at all.

How this page was produced. The formula was parsed, the connectivity resolved (diatomic), and every bond-order arrangement enumerated and scored on octet satisfaction, formal charge and where that charge sits. The structure above is the winner. Bond angles, hybridization and the polarity verdict are read off the resulting geometry, not looked up.