9.6
Covalent bonds are formed between nonmetals by the sharing of valence electrons. But why do nonmetals prefer to share electrons rather than transfer them like in ionic bonds? Nonmetals have high ionization energies, which makes it difficult to transfer valence electrons from one atom to another.
Consider a molecule of ammonia. The nitrogen atom requires three more electrons to reach an octet, and the hydrogen atom needs an electron to reach a duet.
Therefore, the nitrogen atom bonds with three hydrogen atoms such that both nitrogen and hydrogen reach stable electron configurations. Since each of these bonds shares one pair of electrons, it is called a single bond.
The shared pair of electrons in the covalent bond is called a bonding pair. The valence electrons not participating in bonding are called the lone pair or nonbonding electrons.
With 6 valence electrons, oxygen atoms need two more electrons to reach an octet. Therefore, two oxygen atoms share two-electron pairs forming a double bond. Nitrogen, on the other hand, shares the three unpaired electrons in its diatomic form, creating a triple bond.
Single and multiple bonds differ in terms of bond length and strength. Triple bonds are shorter than double bonds, which are shorter than single bonds. The bond strength increases with bond multiplicity. This is why it is hard to break the triple bond in nitrogen, making it relatively unreactive.
The Lewis model helps to predict the structure and stability of molecules. According to the Lewis model, H2O is a stable molecule; because both oxygen and hydrogen have achieved stable electron configurations.
If the oxygen shares electrons with only one hydrogen atom, the resulting OH molecule is not stable since oxygen has only 7 valence electrons and cannot reach the octet. However, if an extra electron is added to the oxygen to complete the octet, the resulting hydroxide ion becomes stable with a negative charge.
Covalent bonds are directional because the shared electrons link two specific pairs of atoms. In contrast, ionic bonds are nondirectional and hold several ions in the lattice. Thus, in a covalent compound, the individual molecules are considered to be fundamental units.
Compared to ionic bonds, which results from the transfer of electrons between metallic and nonmetallic atoms, covalent bonds result from the mutual at…
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