Skip to content
Question

Q.Which of the following will be the least reactive towards nucleophilic substitution reaction ? (A) Benzyl chloride (C6H5CH2ClC_6H_5CH_2Cl) (B) 1-chloro-4-methylbenzene (4ext−CH3C6H4Cl4 ext{-}CH_3C_6H_4Cl) (C) CH3−ClCH_3-Cl (D) Chlorocyclohexane (C6H11ClC_6H_{11}Cl)

CBSECBSE Class XII Board 2026MCQ· 1mImportance★★★★★
✓ Free question

The key idea is that nucleophilic substitution reactivity depends on the stability of the carbocation intermediate (for SN1) or the accessibility of the carbon (for SN2). Among the given options, 1-chloro-4-methylbenzene (4-methylchlorobenzene) is an aryl halide where the chlorine is directly attached to an aromatic ring — its lone pairs are delocalised into the ring, making the C–Cl bond extremely strong and resistant to both SN1 and SN2. The least reactive is therefore option (B).


Why this approach works

Nucleophilic substitution reactions (SN1 and SN2) both require the leaving group (here, Cl⁻) to depart. The ease of this departure depends on:

  • For SN1: The stability of the carbocation formed after Cl⁻ leaves. More stable carbocations (tertiary, allylic, benzylic) react faster.
  • For SN2: The steric hindrance around the carbon bearing the leaving group. Less hindered carbons (methyl > primary > secondary) react faster.

But there is a special case: when chlorine is directly bonded to an aromatic ring (an aryl halide), the C–Cl bond gains partial double-bond character due to resonance. This makes it much stronger and harder to break — so aryl halides are notoriously unreactive in typical nucleophilic substitutions unless special conditions (like very strong nucleophiles or high temperatures) are used.

Let’s examine each option.


Step-by-step reasoning

1. Option (A): Benzyl chloride (C6H5CH2ClC_6H_5CH_2Cl)

Here, chlorine is on a carbon next to the benzene ring, not directly on it. The benzylic carbocation (C6H5CH2+C_6H_5CH_2^+) is highly stabilised by resonance with the ring. So SN1 is very fast. SN2 is also possible because the benzylic carbon is primary and not too hindered. This compound is highly reactive.

2. Option (B): 1-chloro-4-methylbenzene (4-methylchlorobenzene)

Chlorine is directly attached to the benzene ring. The lone pairs on chlorine participate in resonance with the aromatic π-system, giving the C–Cl bond partial double-bond character. This bond is very strong — about 30–40 kJ/mol stronger than a typical alkyl C–Cl bond. Neither SN1 (no stable carbocation — aryl cations are extremely unstable) nor SN2 (the carbon is sp² hybridised and the backside is blocked by the ring) works under normal conditions. This is the least reactive.

Watch out

A common mistake

Students often think that the methyl group on the ring makes it more reactive (like an electron-donating group activating the ring for electrophilic substitution). But for nucleophilic substitution, the methyl group does not help — the fundamental problem is the strong C–Cl bond and the sp² carbon. The methyl group is irrelevant here.

3. Option (C): CH3ClCH_3Cl (methyl chloride)

Methyl chloride is the classic substrate for SN2 — the carbon is completely unhindered, so SN2 is very fast. SN1 is not favoured (methyl carbocation is very unstable), but SN2 more than compensates. Overall, it is highly reactive.

4. Option (D): Chlorocyclohexane (C6H11ClC_6H_{11}Cl)

This is a secondary alkyl halide. It can undergo both SN1 (secondary carbocation, moderately stable) and SN2 (some steric hindrance, but still possible). It is moderately reactive — much more reactive than an aryl halide, but less than benzyl chloride or methyl chloride.


Putting it together

Reactivity order (most to least reactive):

Benzyl chloride > Methyl chloride > Chlorocyclohexane > 1-chloro-4-methylbenzene

The least reactive is clearly the aryl halide.

Tip

A quick shortcut

If you see a halogen directly attached to a benzene ring (aryl halide), it is almost always the least reactive in nucleophilic substitution — unless the question is about very special conditions (like benzyne mechanism). For standard exam questions, pick the aryl halide.

✓Final answer

The least reactive towards nucleophilic substitution is (B) 1-chloro-4-methylbenzene.

Unlock everything free for 14 days

  • Full step-by-step solutions
  • Concept-first explanations
  • Methods, shortcuts & mistakes
  • PYQ mapping + timed mock tests

Full access for 14 days. No credit card required.