Q.The position of –Br in the compound can be classified as ____________.
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Start your 14-day free trial to unlock the full solution →The key is to identify the carbon bearing the bromine and check its immediate neighbours. The bromine is attached to a carbon that is one bond away from a C=C double bond, making it an allylic halide. The correct option is (i).
Why this is about “allyl” vs “vinyl” vs “aryl”
In organic chemistry, the classification of a halide (or any substituent) depends on the hybridisation and bonding of the carbon it’s attached to, and its relationship to a double bond or aromatic ring.
- Vinyl halide: halogen directly on a carbon of a C=C bond.
- Allyl halide: halogen on a carbon adjacent to a C=C bond (i.e., one carbon away from the double bond).
- Aryl halide: halogen directly on a carbon of an aromatic ring.
- Secondary/primary/tertiary: refers to the number of carbon atoms attached to the halogen-bearing carbon (ignoring the double bond’s influence).
The given compound is . Let’s decode its structure step by step.
1. Draw the full structure
The formula means:
- Start with a three-carbon chain:
- Then a carbon that has a bromine and two methyl groups:
So the carbon skeleton is:
with a Br attached to the fourth carbon (the one with two methyls).
Numbering from the left:
- (C1)
- (C2, )
- (C3, )
- (C4, )
The double bond is between C2 and C3.
2. Locate the bromine
The bromine is on C4. Now ask: what is the relationship of C4 to the double bond?
- C4 is not one of the carbons of the double bond (those are C2 and C3).
- C4 is directly attached to C3, which is an carbon of the double bond.
That is the defining feature of an allylic position: the halogen is on a carbon adjacent to a C=C bond.
A quick way: if the carbon with the halogen is one bond away from a C=C, it’s allylic. If it’s on the C=C itself, it’s vinylic. If it’s on an aromatic ring, it’s aryl.
3. Eliminate the other options
- Vinyl: would require Br directly on C2 or C3 (the carbons). Not the case.
- Aryl: would require an aromatic ring. There is no benzene ring here. …
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