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NCERT Exemplar · Q22

Q.Molecules whose mirror image is non superimposable over them are known as chiral. Which of the following molecules is chiral in nature?

(i) 2-Bromobutane
(ii) 1-Bromobutane
(iii) 2-Bromopropane
(iv) 2-Bromopropan-2-ol
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A molecule is chiral if it has a carbon atom bonded to four different groups (a chiral centre). Among the given options, only 2-Bromobutane has such a carbon, making it the chiral molecule.

Why chirality matters — and how to spot it

Chirality is a property of molecular handedness: a chiral molecule and its mirror image cannot be superimposed, like your left and right hands. For most organic molecules at the JEE/NEET level, chirality arises from a stereogenic centre — typically a carbon atom with four different substituents. If any two groups on that carbon are identical, the molecule is achiral (it has a plane of symmetry).

So the task is simple: check each molecule for a carbon with four distinct attachments.


Step-by-step analysis

1. 2-Bromobutane

Structure: CH3−CHBr−CH2−CH3\mathrm{CH_3-CHBr-CH_2-CH_3}

Number the carbons:

  • C1: CH3−\mathrm{CH_3-} (three H's, one C — not a chiral centre)
  • C2: −CHBr−\mathrm{-CHBr-} — this carbon is bonded to:
    • a hydrogen (H)
    • a bromine (Br)
    • a methyl group (CH3−\mathrm{CH_3-})
    • an ethyl group (−CH2CH3\mathrm{-CH_2CH_3})

All four groups are different. Therefore, C2 is a chiral centre. The molecule exists as a pair of enantiomers.

Tip

A quick check: if the carbon is attached to four different atoms or groups (count the atoms directly attached, then look at the next sphere if needed), it's chiral. Here, H, Br, CH₃, and CH₂CH₃ are all distinct.

2. 1-Bromobutane

Structure: CH2Br−CH2−CH2−CH3\mathrm{CH_2Br-CH_2-CH_2-CH_3}

  • C1: −CH2Br\mathrm{-CH_2Br} — two hydrogens, one bromine, one carbon. Two H's are identical → not chiral.
  • C2, C3, C4: each has at least two identical substituents (e.g., two H's on a CH2\mathrm{CH_2} group). No chiral centre.

The molecule is achiral. …

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