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Chemical properties of organic compounds Simplified Revision Notes

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Chemical properties of organic compounds

1. Hydrocarbons

Hydrocarbons are divided into alkanes, alkenes, and alkynes, each with different properties and reactivities.

1.1 Alkanes (CnH2n+2)(CₙH₂ₙ₊₂)

  • Saturated hydrocarbons (only single bonds).
  • Relatively unreactive due to strong CCC-C and CHC-H bonds.
  • Low boiling points and evaporate easily.
  • Used as fuels due to their ability to release energy when burned.
  • Examples: Butane (lighter gas), petrol, paraffin.

1.2 Alkenes (CnH2n)(CₙH₂ₙ)

  • Unsaturated hydrocarbons (contain at least one double bond).
  • More reactive than alkanes.
  • Used in the manufacture of plastics (e.g. ethene for polyethene).
  • Example: Ethene (C2H4).(C₂H₄).

1.3 Alkynes (CnH2n2)(CₙH₂ₙ₋₂)

  • Highly unsaturated hydrocarbons (contain at least one triple bond).
  • Very reactive.
  • Used as industrial fuels and in welding (e.g. ethyne/acetylene burns at high temperatures).

2. Haloalkanes (Halogenated Alkanes)

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  • Alkanes with halogens (e.g. Br,Cl,IBr, Cl, I) attached.
  • Saturated hydrocarbons, relatively unreactive.
  • Poisonous and can be used as solvents, anaesthetics, or in dry cleaning.
  • Example: Chloroform (CHCl3)(CHCl₃) used as an anaesthetic.

Environmental Impact

  • Chlorofluorocarbons (CFCs)(CFCs), once used in refrigerants and aerosols, contribute to ozone depletion and are being phased out.

3. Alcohols (CnH2n+1OH)(CₙH₂ₙ₊₁OH)

  • Saturated compounds with a hydroxyl (OH)(-OH) functional group.
  • Strong hydrogen bonding makes them soluble in water and have higher boiling points than hydrocarbons.
  • Used in fuels, solvents, and alcoholic beverages.
  • Examples:
    • Methanol (CH3OH)(CH₃OH) – toxic, used in methylated spirits.
    • Ethanol (C2H5OH)(C₂H₅OH) – found in alcoholic drinks.

Types of Alcohols

  1. Primary Alcohols – Hydroxyl (OH)(-OH) attached to a carbon bonded to one other carbon. (e.g. propan-1-ol).
  2. Secondary Alcohols – Hydroxyl (OH)(-OH) attached to a carbon bonded to two other carbons. (e.g. propan-2-ol).
  3. Tertiary Alcohols – Hydroxyl (OH)(-OH) attached to a carbon bonded to three other carbons. (e.g. methylpropan-2-ol).

4. Aldehydes (CnH2nO)(CₙH₂ₙO) & Ketones (CnH2nO)(CₙH₂ₙO)

  • Contain a carbonyl group (C=O).(-C=O).
  • Aldehydes: Carbonyl group is on the first carbon (e.g. propanal).
  • Ketones: Carbonyl group is on an inner carbon (e.g. propanone).
  • Functional isomers of each other.
  • Used in solvents, perfumes, and flavouring.

5. Carboxylic Acids (CnH2nO2)(CₙH₂ₙO₂)

  • Contain a carboxyl (COOH)(-COOH) functional group.
  • Highly polar and can form hydrogen bondshigh boiling points.
  • Weak acids, donate H+H⁺ in solution.
  • Used in food preservatives and manufacturing.
  • Examples:
    • Methanoic acid (formic acid) – found in insect stings.
    • Ethanoic acid (acetic acid) – found in vinegar.

6. Esters (CnH2nO2)(CₙH₂ₙO₂)

  • Functional isomers of carboxylic acids but have an OC=OO-C=O functional group.
  • Pleasant fruity odour.
  • Used in perfumes, food flavouring, and plasticisers.
  • Example: Ethyl ethanoate (used in nail polish remover).

Key Takeaways

  • Alkanes = Saturated, unreactive, used as fuels.
  • Alkenes & Alkynes = Unsaturated, reactive, used in plastics and welding.
  • Haloalkanes = Contain halogens, used as solvents and refrigerants.
  • Alcohols = Hydroxyl (OH)(-OH) group, polar, used in fuels and beverages.
  • Aldehydes & Ketones = Contain carbonyl (C=O)(-C=O) groups, used in solvents and perfumes.
  • Carboxylic Acids = Weak acids, used in food preservatives and vinegar.
  • Esters = Fruity-smelling, used in perfumes and flavouring.
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