The Octet Rule and Chemical Combination:
Atoms of elements combine chemically to attain a stable, low-energy electronic configuration of the nearest noble gas (an octet of 8 valence electrons, or a duplet of 2 electrons for Helium). This can be accomplished through: (i) complete transfer of electrons (ionic bonding), (ii) mutual sharing of electron pairs (covalent bonding), or (iii) coordinate (dative) bonding.
Electrovalent (Ionic) Bonding:
An electrovalent (ionic) bond is formed by the complete transfer of one or more valence electrons from an electropositive metallic atom to an electronegative non-metallic atom. The resulting oppositely charged ions (cations and anions) are held together by strong, non-directional electrostatic forces of attraction.
Formation of Key Ionic Compounds (Electron Dot Structures):
- Sodium Chloride ($\text{NaCl}$):
$\text{Na}(2, 8, 1) \rightarrow \text{Na}^+(2, 8) + e^-$ (Cation formation)
$\text{Cl}(2, 8, 7) + e^- \rightarrow \text{Cl}^-(2, 8, 8)$ (Anion formation)
$\text{Na}^+ + \text{Cl}^- \rightarrow \mathbf{\text{NaCl}}$ (Giant 3D cubic lattice) - Magnesium Chloride ($\text{MgCl}_2$):
$\text{Mg}(2, 8, 2) \rightarrow \text{Mg}^{2+}(2, 8) + 2e^-$
$2\text{Cl}(2, 8, 7) + 2e^- \rightarrow 2\text{Cl}^-(2, 8, 8)$
$\text{Mg}^{2+} + 2\text{Cl}^- \rightarrow \mathbf{\text{MgCl}_2}$ - Calcium Oxide ($\text{CaO}$):
$\text{Ca}(2, 8, 8, 2) \rightarrow \text{Ca}^{2+}(2, 8, 8) + 2e^-$
$\text{O}(2, 6) + 2e^- \rightarrow \text{O}^{2-}(2, 8)$
$\text{Ca}^{2+} + \text{O}^{2-} \rightarrow \mathbf{\text{CaO}}$
Characteristic Properties of Electrovalent Compounds:
1. Physical State: Hard, crystalline solids due to strong electrostatic lattice forces.
2. Melting and Boiling Points: Very high melting and boiling points (e.g. $\text{NaCl}$ m.p. $801^\circ\text{C}$) because massive thermal energy is required to overcome strong ionic lattice attractions.
3. Electrical Conductivity: Insulators in solid state (ions are immobilized in rigid crystal lattice), but superb conductors in molten (fused) or aqueous solution states where the crystal lattice collapses into freely mobile ions.
4. Solubility: Readily soluble in polar solvents (water, due to high dielectric constant $\approx 80$) and insoluble in non-polar organic solvents (benzene, carbon tetrachloride).