Q.(a) Write the major product in the following reactions : Cyclohexene (, drawn as a six-membered ring with one ) ?
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Start your 14-day free trial to unlock the full solution →The three parts test different concepts: (a) electrophilic addition of bromine to an alkene gives a vicinal dibromide;
(b) a racemic mixture is an equimolar mix of two enantiomers with zero net optical rotation;
(c) p-dichlorobenzene has a higher melting point due to its symmetrical structure allowing better crystal packing.
(a) Cyclohexene + Br₂ (heat)
Concept first: When bromine adds to a carbon-carbon double bond, the reaction is an electrophilic addition. The bromine molecule is polarised as it approaches the π bond, forming a cyclic bromonium ion intermediate. The second bromide ion then attacks from the opposite side (anti addition), giving a vicinal dibromide — two bromine atoms on adjacent carbons.
The "heat" condition here doesn't change the product; it just ensures the reaction proceeds readily. No rearrangement occurs because the bromonium ion is symmetrical in cyclohexene.
Step-by-step:
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Identify the reactive site: Cyclohexene has one double bond between two sp² carbons. This π bond is electron-rich and acts as a nucleophile.
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Attack on Br₂: The π electrons attack one bromine atom in Br₂, pushing the Br–Br bond electrons onto the other bromine, which leaves as Br⁻. This forms a three-membered bromonium ion ring.
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Backside attack by Br⁻: The free bromide ion attacks the more substituted carbon of the bromonium ion (though here both carbons are equally substituted) from the opposite side, opening the ring and placing Br atoms on adjacent carbons in trans configuration relative to each other.
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Final product: The product is 1,2-dibromocyclohexane (a vicinal dibromide). The stereochemistry is trans (anti addition), but since the question only asks for the major product, the structural formula is sufficient.
The product is 1,2-dibromocyclohexane.
Do not confuse this with free radical bromination (which requires light or a radical initiator and gives allylic bromination). Here, heat alone does not initiate radicals; it just speeds up the ionic addition.
(b) Define Racemic mixture
Concept first: Many organic molecules exist as non-superimposable mirror images (enantiomers). When a reaction produces equal amounts of both enantiomers, the mixture is optically inactive because the rotations cancel exactly.
Definition: A racemic mixture (or racemate) is an equimolar mixture of two enantiomers of a chiral compound. It shows no net optical rotation because the dextrorotatory (+) and levorotatory (−) forms are present in equal amounts.
A racemic mixture is often denoted by the prefix (±) or dl-. It can sometimes be separated into pure enantiomers by chiral resolution.
(c) Why p-dichlorobenzene has a higher melting point than o- and m-isomers
Concept first: Melting point depends on how well molecules pack in the crystal lattice. Symmetrical molecules pack more efficiently, requiring more energy (higher temperature) to overcome intermolecular forces.
Step-by-step reasoning:
- Compare molecular symmetry:
- p-dichlorobenzene: The two chlorine atoms are opposite each other (1,4-positions). The molecule is highly symmetrical and rod-like. …
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