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Question of 147

Q.(a) Give reasons for the following observations.

(i) Propan-2-ol is an achiral molecule.
(ii) The treatment of alkyl chloride with aq. KOH gives alcohol but in presence of alc. KOH form alkene as major product.
(iii) 2-chloropropane undergoes faster reaction towards SN1S_N1 than 1-chloropropane. OR
(b) Haloarenes are much less reactive than haloalkanes towards nucleophilic reactions. Give reason.
Manipur CohsemCOHSEM Manipur Higher Secondary Board 2024Subjective· 3mImportance★★★★★
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This question offers a choice between three short reasoning questions on alcohols/haloalkanes (primary) or explaining haloarenes' low reactivity (the alternative). Both are answered below.

(Primary) — (a):

  1. Propan-2-ol is achiral: In propan-2-ol, CH3−CH(OH)−CH3CH_3-CH(OH)-CH_3, the central carbon is bonded to −OH-OH, −H-H, and two identical −CH3-CH_3 groups. Since a stereocentre requires four different groups, and two of the four substituents here are identical, this carbon is not a stereocentre — the molecule is achiral (it has an internal plane of symmetry).
  2. Aqueous KOH gives alcohol, alcoholic KOH gives alkene: In aqueous KOH, water is a highly polar, ionising, hydrogen-bond-donating solvent; OH−OH^- acts primarily as a strong nucleophile, favouring substitution (SN1/SN2S_N1/S_N2) to give the alcohol. In alcoholic KOH, the alkoxide/hydroxide is instead a strong, comparatively bulky base in a less ionising medium, favouring elimination (E1/E2E1/E2) by abstracting a β-hydrogen, giving the alkene as the major product. (iii) 2-Chloropropane undergoes SN1S_N1 faster than 1-chloropropane: 2-Chloropropane is a secondary halide, ionising to a relatively stabilised secondary carbocation, whereas 1-chloropropane is a primary halide, which would ionise to a much less stable primary carbocation. Since the rate-determining step of SN1S_N1 is carbocation formation, the more stable secondary carbocation forms faster, making 2-chloropropane react faster via SN1S_N1. OR (b) — Haloarenes are much less reactive than haloalkanes towards nucleophilic substitution: Several factors combine to make aryl halides far less reactive:
  1. Resonance: The halogen's lone pair conjugates with the aromatic ring, giving the C–X bond partial double-bond character, making it shorter and stronger (harder to break) than a typical C–X single bond in an alkyl halide. …

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