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Q.Explain SN1 and SN2 reactions with an example.

Telangana TsbieTelangana Board of Intermediate Education 2018Subjective· 4mImportance★★★★★
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SN1 and SN2 are the two mechanisms of nucleophilic substitution at a saturated carbon, differing in molecularity, rate law, stereochemistry, and the substrates that favour each.

SN1 reaction (Substitution Nucleophilic Unimolecular):

This proceeds in two steps:

Step 1 (slow, rate-determining): The C–X bond of the alkyl halide breaks heterolytically to form a carbocation intermediate:

R3C−X→slowR3C++X−R_3C-X \xrightarrow{slow} R_3C^+ + X^-

Step 2 (fast): The nucleophile attacks the planar carbocation from either face:

R3C++Nu−→fastR3C−NuR_3C^+ + Nu^- \xrightarrow{fast} R_3C-Nu

  • Rate law: depends only on the concentration of the substrate (unimolecular): Rate =k[R3C−X]= k[R_3C-X].
  • Stereochemistry: since the carbocation is planar (sp2), the nucleophile can attack from either side, giving a racemic mixture (partial or complete racemisation).
  • Favoured by: tertiary (3°) alkyl halides (carbocation stabilised by hyperconjugation/inductive effect), polar protic solvents.
  • Example: Hydrolysis of tert-butyl bromide, (CH3)3C−Br(CH_3)_3C-Br, with water gives (CH3)3C−OH(CH_3)_3C-OH via a stable tertiary carbocation.

SN2 reaction (Substitution Nucleophilic Bimolecular):

This proceeds in a single step:

The nucleophile attacks the carbon from the side opposite to the leaving group (backside attack), forming a transition state where both the nucleophile and leaving group are partially bonded to carbon, and then the leaving group departs as the new bond fully forms:

Nu−+R−X→[Nu⋯C⋯X]‡→Nu−R+X−Nu^- + R-X \rightarrow [Nu\cdots C \cdots X]^{\ddagger} \rightarrow Nu-R + X^-

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