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Ionic bonding takes place when the difference in electronegativity between the two atoms is more than 1,7. This usually happens when a metal atom bonds with a non-metal atom. When the difference in electronegativity is large, one atom will attract the shared electron pair much more strongly than the other, causing electrons to be transferred from one atom to the other.

Ionic bond
An ionic bond is a type of chemical bond based on the electrostatic forces between two oppositely-charged ions. When ionic bonds form, a metal donates one or more electrons, due to having a low electronegativity, to form a positive ion or cation. The non-metal atom has a high electronegativity, and therefore readily gains electrons to form a negative ion or anion. The two ions are then attracted to each other by electrostatic forces.

Example 1:

In the case of NaCl , the difference in electronegativity is 2,1. Sodium has only one valence electron, while chlorine has seven. Because the electronegativity of chlorine is higher than the electronegativity of sodium, chlorine will attract the valence electron of the sodium atom very strongly. This electron from sodium is transferred to chlorine. Sodium loses an electron and forms an Na + ion. Chlorine gains an electron and forms an Cl - ion. The attractive force between the positive and negative ion holds the molecule together.

The balanced equation for the reaction is:

Na + Cl NaCl

This can be represented using Lewis notation:

Ionic bonding in sodium chloride

Example 2:

Another example of ionic bonding takes place between magnesium ( Mg ) and oxygen ( O ) to form magnesium oxide ( MgO ). Magnesium has two valence electrons and an electronegativity of 1,2, while oxygen has six valence electrons and an electronegativity of 3,5. Since oxygen has a higher electronegativity, it attracts the two valence electrons from the magnesium atom and these electrons are transferred from the magnesium atom to the oxygen atom. Magnesium loses two electrons to form Mg 2 + , and oxygen gains two electrons to form O 2 - . The attractive force between the oppositely charged ions is what holds the molecule together.

The balanced equation for the reaction is:

2 Mg + O 2 2 MgO

Because oxygen is a diatomic molecule, two magnesium atoms will be needed to combine with one oxygen molecule (which has two oxygen atoms) to produce two molecules of magnesium oxide ( MgO ).

Ionic bonding in magnesium oxide
Notice that the number of electrons that is either lost or gained by an atom during ionic bonding, is the same as the valency of that element

Ionic compounds

  1. Explain the difference between a covalent and an ionic bond.
  2. Magnesium and chlorine react to form magnesium chloride.
    1. What is the difference in electronegativity between these two elements?
    2. Give the chemical formula for:
      1. a magnesium ion
      2. a chloride ion
      3. the ionic compound that is produced during this reaction
    3. Write a balanced chemical equation for the reaction that takes place.
  3. Draw Lewis diagrams to represent the following ionic compounds:
    1. sodium iodide ( NaI )
    2. calcium bromide ( CaBr 2 )
    3. potassium chloride ( KCl )

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Source:  OpenStax, Chemistry grade 10 [caps]. OpenStax CNX. Jun 13, 2011 Download for free at http://cnx.org/content/col11303/1.4
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