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Q.(a) Write hybridized state of carbon bonded to halogen atom in benzyl chloride.

(b) Explain the mechanism of bimolecular nucleophilic substitution reaction. OR
(a) Write hybridized state of carbon bonded to halogen atom in allyl chloride.
(b) Explain the mechanism of uni-molecular nucleophilic substitution reaction.
Rajasthan RbseRajasthan Board Senior Secondary Examination 2020Subjective· 3mImportance★★★★★
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In benzyl chloride the C–Cl carbon is sp3 (not part of the aromatic ring); SN2 is a single-step, concerted backside attack that inverts configuration at carbon.

  1. Hybridisation of the carbon bonded to Cl in benzyl chloride: Benzyl chloride is C6H5–CH2–Cl. The chlorine is attached to the –CH2– carbon (the benzylic carbon), which is NOT one of the aromatic ring carbons — it is an ordinary sp3-hybridised carbon bonded to: the phenyl ring, two H atoms, and Cl. So the carbon bonded to Cl is sp3 hybridised.
  2. Mechanism of SN2 (bimolecular nucleophilic substitution): SN2 reactions occur in a single step (concerted mechanism) — bond breaking (C–leaving group) and bond making (C–nucleophile) happen simultaneously.
  1. The nucleophile (Nu−) approaches the electrophilic carbon from the side directly opposite (180°) to the leaving group (X), since the front side is blocked by the leaving group.
  2. As the nucleophile begins to form a bond with carbon, the C–X bond simultaneously begins to break. This passes through a single transition state in which the carbon is roughly trigonal bipyramidal, partially bonded to both the incoming nucleophile and the departing leaving group. …

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