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Q.(a) Explain with example SN1 mechanism.

(b) Dipole moment of chlorobenzene is lower than that of cyclohexylcholoride. Give reason. OR How will you convert the following ?
(a) Ethyl bromide to Ethylisocyanide
(b) Isopropylbromide to Propene
(c) Aniline to Flourobenzene
(d) Chlorobenzene to D.D.T.
(e) Bromoethane to iodoethane.
(f) Chlorobenzene to Aniline.
Punjab PsebPSEB Punjab Class 12 Board 2018Subjective· 6mImportance★★★★★
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(a) SN1 proceeds through a discrete carbocation intermediate formed in the slow step, best for tertiary/benzylic/allylic substrates. (b) Chlorobenzene's C–Cl bond gains partial double-bond character by resonance with the ring, reducing its net polarity compared with the purely inductive C–Cl bond in cyclohexyl chloride.

(a) SN1S_N1 mechanism, with example:

SN1S_N1 (substitution, nucleophilic, unimolecular) is a two-step mechanism:

Step 1 (slow, rate-determining): The substrate ionises on its own, with the leaving group departing to form a carbocation intermediate:

(CH3)3C−Br→slow(CH3)3C++Br−(CH_3)_3C-Br \xrightarrow{\text{slow}} (CH_3)_3C^+ + Br^-

Step 2 (fast): The nucleophile then rapidly attacks the planar carbocation:

(CH3)3C++OH−→fast(CH3)3C−OH(CH_3)_3C^+ + OH^- \xrightarrow{\text{fast}} (CH_3)_3C-OH

Since only the substrate is involved in the rate-determining step, the overall rate law depends only on substrate concentration: Rate=k[(CH3)3CBr]\text{Rate} = k[(CH_3)_3CBr] — it is independent of nucleophile concentration, i.e. unimolecular kinetics (hence '1' in SN1S_N1). SN1S_N1 is favoured by substrates that give a stable carbocation (tertiary > secondary > primary; also benzylic/allylic) and by polar protic solvents (which stabilise the ionic intermediate).

(b) Dipole moment: chlorobenzene << cyclohexyl chloride:

In cyclohexyl chloride, the C−ClC-Cl bond is a simple sp3 C−Clsp^3\,C-Cl single bond; its dipole moment arises purely from the inductive electronegativity difference between CC and ClCl, giving a substantial bond dipole with no opposing effect.

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