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Structure and Formulae of Alkenes

Spec 4.7.2.1 πŸ“— Foundation
πŸ“– In-Depth Theory

What Are Alkenes?

ALKENES are hydrocarbons (contain only carbon and hydrogen) with a C=C DOUBLE BOND.
GENERAL FORMULA: Cβ‚™Hβ‚‚β‚™
Examples: ethene Cβ‚‚Hβ‚„, propene C₃H₆, butene Cβ‚„Hβ‚ˆ, pentene Cβ‚…H₁₀.
UNSATURATED:
Alkenes are UNSATURATED β€” they contain fewer hydrogen atoms than the maximum possible.
The C=C double bond means two H atoms fewer than the corresponding alkane (Cβ‚™Hβ‚‚β‚™β‚Šβ‚‚).
Compare: ethane Cβ‚‚H₆ (alkane, saturated) vs ethene Cβ‚‚Hβ‚„ (alkene, unsaturated).
The double bond makes alkenes much MORE REACTIVE than alkanes.
Alkanes are relatively inert; alkenes undergo addition reactions readily.
FUNCTIONAL GROUP:
The C=C double bond is the functional group β€” it determines the characteristic reactions of alkenes.
All alkenes react in similar ways because they all share this functional group.

Representing Alkene Structures

Alkene structures can be represented in three ways:
1. MOLECULAR FORMULA: shows total atoms β€” e.g. Cβ‚‚Hβ‚„ (ethene), C₃H₆ (propene).
2. DISPLAYED FORMULA (structural formula): shows all bonds and atoms.
Ethene: Hβ‚‚C=CHβ‚‚ (each C has a double bond between them and 2 H atoms)
Propene: CH₃-CH=CHβ‚‚ (one CH₃ group and a C=C double bond)
3. SKELETAL FORMULA: shows carbon skeleton as a zigzag, H atoms implied.
Each line represents a bond; each corner/end = a carbon.
FIRST FOUR ALKENES:
Ethene: Cβ‚‚Hβ‚„ β€” two carbons, double bond
Propene: C₃H₆ β€” three carbons, double bond between C1 and C2
Butene: Cβ‚„Hβ‚ˆ β€” four carbons (can have double bond in different positions)
Pentene: Cβ‚…H₁₀ β€” five carbons
TESTING FOR UNSATURATION (C=C double bond):
Add bromine water (orange/yellow solution).
Alkenes DECOLOURISE bromine water β€” goes from orange to colourless.
Alkanes do NOT decolourise bromine water β€” no change.
This is the standard test to distinguish alkenes from alkanes.

Homologous Series

Alkenes form a HOMOLOGOUS SERIES β€” a family of compounds with:
Same general formula (Cβ‚™Hβ‚‚β‚™).
Same functional group (C=C).
Same general chemical properties.
Gradually changing physical properties (boiling point, density increases with chain length).
Each member differs from the next by CHβ‚‚.
COMPARING ALKENES AND ALKANES:
Alkanes (Cβ‚™Hβ‚‚β‚™β‚Šβ‚‚): saturated, single bonds only, relatively unreactive, used mainly as fuels.
Alkenes (Cβ‚™Hβ‚‚β‚™): unsaturated, C=C double bond, reactive, used to make polymers and other chemicals.
CRACKING produces alkenes:
Long-chain alkanes cracked at high temperature with a catalyst β†’ shorter alkanes + alkenes.
Ethene and propene are the most commercially important alkenes.
Ethene β†’ polyethene (poly(ethene)) β€” one of the most widely produced plastics.
⚠️ Common Mistake

Alkenes are UNSATURATED β€” they have fewer H atoms than alkanes with the same carbon count. Don't confuse the general formula: alkanes Cβ‚™Hβ‚‚β‚™β‚Šβ‚‚, alkenes Cβ‚™Hβ‚‚β‚™. The test for C=C: bromine water decolourises (orange β†’ colourless) with alkenes, no change with alkanes.

πŸ“ Key Equations
General formula for alkenes: Cβ‚™Hβ‚‚β‚™
πŸ“Œ Key Note

Alkenes: Cβ‚™Hβ‚‚β‚™, C=C double bond, unsaturated, more reactive than alkanes. Test: decolourise bromine water. First four: ethene, propene, butene, pentene. Functional group = C=C. Produced by cracking. Used to make polymers and other chemicals.

🎯 Matching Activity β€” Alkene Structures

Match each alkene to its molecular formula and key property. β€” drag the symbols on the right to match the component names on the left.

Ethene
Drop here
Propene
Drop here
Unsaturated
Drop here
Bromine water test
Drop here
Alkenes decolourise orange bromine water β€” alkanes do not
Contains C=C double bond β€” fewer H atoms than the alkane with same carbon count
Cβ‚‚Hβ‚„ β€” simplest alkene, used to make poly(ethene)
C₃H₆ β€” used to make polypropylene
πŸ”¬ Triple Science Only

Structure and formulae of alkenes (4.7.2.1) is chemistry-only β€” not in Combined Science.

🎯 Test Yourself
Question 1 of 2
1. What is the molecular formula of butene?
2. How can you distinguish ethene from ethane using bromine water?
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