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Q.From the type of hybridisation with respect to haloalkanes and haloarenes, predict the reactivity of haloarenes towards nucleophilic substituion in comparison to haloalkanes.

Manipur CohsemCOHSEM Manipur Higher Secondary Board 2020Subjective· 2mImportance★★★★★
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The aryl carbon's higher s-character and resonance with the ring both strengthen the C−XC-X bond in haloarenes, making it much harder to break than the ordinary sp3sp^3 C−XC-X bond in haloalkanes.

In a haloalkane, the carbon bonded to the halogen is sp3sp^3 hybridised — an ordinary single covalent bond. In a haloarene, the halogen-bearing carbon is part of the aromatic ring and is sp2sp^2 hybridised; an sp2sp^2 orbital has greater s-character (electron density held closer to the nucleus) than an sp3sp^3 orbital, making the C−XC-X bond in a haloarene shorter and stronger than in a haloalkane. Additionally, in a haloarene, one of the halogen's lone pairs conjugates (delocalises) into the aromatic π\pi-system, giving the C−XC-X bond partial double-bond character — reinforcing its strength further, and also making the ring itself more electron-rich (less attractive to …

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