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📖 Summaries Chemistry

Chemical Bonding

Chapter in a nutshell: Atoms combine to attain a stable noble-gas (octet/duplet) configuration. They do this by transferring electrons (electrovalent/ionic bond), sharing electrons (covalent bond), or sharing a pair donated by one atom (coordinate/dative bond). The bond type decides whether a compound is a high-melting electrolyte (ionic) or a low-melting non-conductor (covalent).

1. Why Atoms Combine — the Octet Rule

Atoms react to achieve the stable electronic configuration of the nearest noble gas — a complete outer shell (octet = 8 electrons; duplet = 2 for H, Li, Be). They do so by losing, gaining or sharing valence electrons.

2. Electrovalent (Ionic) Bond

Formed by the complete transfer of one or more electrons from a metal to a non-metal, producing oppositely charged ions held by electrostatic attraction.
  • Sodium chloride (NaCl): Na (2,8,1) → Na⁺ (2,8) + e⁻; Cl (2,8,7) + e⁻ → Cl⁻ (2,8,8). Na⁺ and Cl⁻ attract → NaCl.
  • Magnesium chloride (MgCl₂): Mg → Mg²⁺ + 2e⁻; two Cl atoms each gain one electron → MgCl₂.
  • Other examples: CaO, MgO, Na₂O, CaCl₂.
  • Formed between elements of low ionisation energy (metals) and high electron affinity (non-metals).

Properties of electrovalent compounds:

PropertyExplanation
Hard crystalline solidsstrong ionic lattice
High melting/boiling pointsstrong electrostatic forces
Conduct electricity when molten or in aqueous solution (not as solids)ions become free to move
Soluble in water, insoluble in organic solventspolar solvent separates ions
Undergo fast ionic reactionsions already present

3. Covalent Bond

Formed by the mutual sharing of electron pairs between two atoms (usually non-metals), each contributing one electron to a shared pair.
TypeShared pairsExamples
Single1H₂, Cl₂, HCl, H₂O, NH₃, CH₄
Double2O₂, CO₂
Triple3N₂
- H₂: two H atoms share 1 pair → each gets a duplet.
  • H₂O: O shares with 2 H atoms (2 single bonds + 2 lone pairs).
  • NH₃: N shares with 3 H atoms (1 lone pair). CH₄: C shares with 4 H atoms.
  • CO₂: O=C=O (two double bonds). N₂: N≡N (triple bond).

Polar vs non-polar covalent:

  • Non-polar: shared pair equally shared (identical atoms) — H₂, Cl₂, O₂.
  • Polar: shared pair pulled towards the more electronegative atom — HCl, H₂O (partial charges).

Properties of covalent compounds:

PropertyExplanation
Liquids/gases or soft solidsweak inter-molecular forces
Low melting/boiling pointsweak forces
Generally non-conductorsno free ions/electrons
Soluble in organic solventsnon-polar
Slow molecular reactionsbonds must break first

4. Coordinate (Dative) Bond

A covalent bond in which the shared pair is contributed by only one atom (the donor); the other atom (acceptor) only provides an empty orbital. Shown by an arrow (→) from donor to acceptor.
  • Ammonium ion (NH₄⁺): NH₃ donates its lone pair to H⁺.
  • Hydronium ion (H₃O⁺): H₂O donates a lone pair to H⁺.
  • Once formed, a coordinate bond is identical to a normal covalent bond.

5. Ionic vs Covalent — Comparison

FeatureIonic (electrovalent)Covalent
Formationtransfer of electronssharing of electrons
Particlesionsmolecules
Statesolidsgases/liquids/soft solids
M.P / B.Phighlow
Conductivityconduct molten/aqueousnon-conductors
Solubilityin waterin organic solvents
Reaction speedfast (ionic)slow (molecular)

6. Worked / Structured Examples (ICSE pattern)

Q1. Show the formation of MgCl₂ by electron transfer. Solution: Mg (2,8,2) → Mg²⁺ (2,8) + 2e⁻; each Cl (2,8,7) gains 1e⁻ → 2Cl⁻ (2,8,8). Mg²⁺ + 2Cl⁻ → MgCl₂.

Q2. Why does NaCl conduct electricity when molten but not when solid? Solution: In the solid the ions are fixed in the lattice; on melting (or dissolving) the ions become free to move and carry current.

Q3. Draw the bonding in a water molecule (describe). Solution: Oxygen (2,6) shares one electron with each of two hydrogen atoms → two O–H single (covalent) bonds; O retains two lone pairs. Each H attains a duplet, O an octet.

Q4. Identify the bond type: (i) CaO, (ii) CH₄, (iii) NH₄⁺. Solution: (i) ionic, (ii) covalent, (iii) covalent + one coordinate bond.

Q5. Why are covalent compounds generally poor conductors? Solution: They have no free ions or electrons to carry charge.

7. Key Terms — Quick Glossary

TermOne-line definition
Octet ruleatoms react to attain 8 electrons in the outer shell.
Electrovalent bondbond formed by transfer of electrons (ions).
Covalent bondbond formed by sharing electron pairs.
Coordinate bondcovalent bond where both electrons come from one atom.
Lone paira valence electron pair not used in bonding.
Polar bondcovalent bond with unequal sharing (partial charges).
Electrovalencynumber of electrons lost/gained.
Covalencynumber of electrons shared.

8. Common Mistakes to Avoid

  • Saying ionic solids conduct in the solid state — they conduct only when molten or aqueous.
  • Confusing electrovalency (transfer) with covalency (sharing).
  • Forgetting that a coordinate bond's pair comes from one atom only.
  • Calling H₂O or HCl "non-polar" — they are polar covalent.
  • Drawing the wrong number of bonds (CO₂ has two double bonds; N₂ a triple bond).

9. Likely Exam Questions (with crisp answers)

  1. Why do atoms form chemical bonds? → To attain a stable noble-gas (octet/duplet) configuration.
  2. Define an electrovalent bond. → A bond formed by the complete transfer of electrons from one atom to another.
  3. Define a covalent bond. → A bond formed by the mutual sharing of electron pairs.
  4. What is a coordinate bond? Give an example. → A covalent bond where the shared pair comes from one atom; e.g. NH₄⁺.
  5. Why do ionic compounds have high melting points? → Strong electrostatic forces in the ionic lattice.
  6. Why do ionic compounds conduct electricity in molten/aqueous state? → The ions become free to move.
  7. Give two properties of covalent compounds. → Low melting points; generally non-conductors.
  8. Distinguish polar and non-polar covalent bonds. → Polar = unequal sharing (HCl); non-polar = equal sharing (H₂).
  9. How many electrons are shared in N₂? → Three pairs (a triple bond).
  10. Name the bond in NH₄⁺ formed between NH₃ and H⁺. → A coordinate (dative) bond.
  11. Why is electron transfer easy between a metal and a non-metal? → The metal has low ionisation energy; the non-metal has high electron affinity.
  12. State the type of bonding and particles in NaCl. → Ionic bonding; ions (Na⁺, Cl⁻).
  13. Why are covalent compounds usually volatile? → Weak inter-molecular forces → low boiling points.
  14. Define lone pair of electrons. → A valence electron pair not involved in bonding.

10. Electron-Dot (Lewis) Structures — step by step

  • NaCl (ionic): Na• gives its 1 valence electron to Cl (which has 7 dots) → Na⁺ [no dots] and [Cl with 8 dots]⁻.
  • MgO (ionic): Mg (2 valence e⁻) transfers both to O (6 dots) → Mg²⁺ and [O with 8 dots]²⁻.
  • H₂ (covalent): H : H — one shared pair; each H now has a duplet.
  • Cl₂ (covalent): each Cl brings 7 dots; they share one pair → both reach an octet, 3 lone pairs each.
  • N₂ (triple): :N⦂⦂⦂N: — three shared pairs, one lone pair on each N.
  • CO₂ (double): O::C::O — carbon shares two pairs with each oxygen (two double bonds).
  • NH₄⁺ (coordinate): the N lone pair of NH₃ is donated to H⁺; the fourth N–H is a coordinate bond.

11. Exceptions & Special Cases

  • Noble gases already have a full octet/duplet, so they do not normally bond.
  • Giant covalent (network) solids — diamond, graphite, silica (SiO₂) — are covalent yet have very high melting points because the whole crystal is one network of covalent bonds. Graphite conducts electricity (free delocalised electrons) — an exception among covalent solids.
  • Variable valency: some elements show more than one valency (Fe²⁺/Fe³⁺, Cu⁺/Cu²⁺).

12. More Worked Examples

Q6. Show the formation of CaO by electron transfer. Solution: Ca (2,8,8,2) → Ca²⁺ + 2e⁻; O (2,6) + 2e⁻ → O²⁻ (2,8). Ca²⁺ + O²⁻ → CaO. Q7. Why does CCl₄ not conduct electricity while NaCl solution does? Solution: CCl₄ is covalent (no ions); NaCl solution has free Na⁺ and Cl⁻ ions. Q8. State the number of shared and lone pairs in H₂O. Solution: 2 shared (bonding) pairs + 2 lone pairs on oxygen. Q9. Which has a higher boiling point: NaCl or HCl, and why? Solution: NaCl — it is ionic with a strong lattice; HCl is a covalent molecular gas with weak forces. Q10. Identify bond types in NH₃ and in MgCl₂. Solution: NH₃ — covalent (3 shared pairs); MgCl₂ — ionic.

13. More Exam Questions (with crisp answers)

  1. Why is graphite a good conductor though it is covalent? → It has free (delocalised) electrons between its layers.
  2. Why does diamond have a very high melting point? → It is a giant covalent network; many strong covalent bonds must be broken.
  3. Give two differences between sodium chloride and carbon tetrachloride. → NaCl is ionic, high m.p., conducts when molten/aqueous; CCl₄ is covalent, low b.p., non-conductor.
  4. What is electrovalency? → The number of electrons an atom loses or gains to form ions.
  5. What is covalency? → The number of electron pairs an atom shares.
  6. Why do ionic reactions occur faster than covalent reactions? → Ions are already present, so no bonds need to be broken first.
  7. Name a molecule with a triple bond and one with a double bond. → N₂ (triple); O₂ or CO₂ (double).
  8. Why is water a polar molecule? → Oxygen is more electronegative, pulling the shared electrons, giving partial charges.

14. How to Predict the Bond Type (quick rule)

  • Metal + non-metal → usually ionic (e.g. NaCl, MgO, CaCl₂).
  • Non-metal + non-metal → usually covalent (e.g. CO₂, NH₃, H₂O).
  • A large electronegativity difference → ionic; a small difference → covalent (polar if not zero).

15. Shapes (for reference)

  • H₂O — bent/angular (two lone pairs on O).
  • NH₃ — pyramidal (one lone pair on N).
  • CH₄ — tetrahedral (no lone pairs).
  • CO₂ — linear.

16. Final Quick-Revision Q&A

  1. Which bond is formed when electronegativity difference is very large? → Ionic (electrovalent).
  2. State one test to distinguish an ionic from a covalent compound. → Check electrical conductivity in molten/aqueous state — ionic conducts, covalent does not.
  3. Why do covalent compounds dissolve in organic solvents? → They are non-polar/weakly polar and mix with non-polar solvents.
  4. Name the ion formed when water accepts a proton. → Hydronium ion (H₃O⁺), via a coordinate bond.
  5. How many lone pairs does nitrogen have in NH₃? → One.