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Q.Why are vinyl halides less reactive than alkyl halides ?

Mizoram MbseMizoram Board of School Education HSSLC 2025Subjective· 2mImportance★★★★★
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In a vinyl halide, the halogen's lone pair delocalises into the adjacent C=C π bond, strengthening the C-X bond and making it resistant to nucleophilic attack, unlike the simple sp³ C-X bond of an alkyl halide.

A vinyl halide has the halogen attached directly to an sp² carbon of a C=C double bond (e.g. CH₂=CH-Cl), whereas an alkyl halide has the halogen on an sp³ carbon.

Two compounding reasons make vinyl halides far less reactive towards nucleophilic substitution:

  1. Resonance (conjugation): One of the lone pairs on the halogen atom delocalises into the π system of the adjacent double bond:

    CH2=CH−X¨:⟷ −CH2−CH=X+CH_2=CH-\ddot{X}: \longleftrightarrow\ ^-CH_2-CH=\overset{+}{X}

    This gives the C-X bond partial double-bond character, making it shorter and stronger than a normal single C-X bond, and much harder to break heterolytically (which is required for both SN1 and SN2 pathways).

  2. Hybridisation effect: The carbon bearing the halogen is sp² hybridised (as opposed to sp³ in alkyl halides). An sp² orbital has more 's' character than an sp³ orbital, so it holds its bonding electron pairs (including the C-X bond) closer to the nucleus and more tightly — again strengthening the C-X bond.

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