Q.Hyperconjugation involves delocalisation of ______. (Note: more than one of the given options may be correct.)
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Start your 14-day free trial to unlock the full solution →Hyperconjugation is the delocalisation of σ-bond electrons (usually C–H) into an adjacent empty or π orbital. The correct options are (i) and (ii).
Hyperconjugation is often called "no-bond resonance" because it involves the partial sharing of σ-bond electrons — typically from a C–H bond on an alkyl group — with an adjacent unsaturated centre or a positively charged carbon. The key idea is that a σ bond (which is normally localised) can donate electron density into an empty or partially filled p orbital or a π* orbital, stabilising the molecule or carbocation.
Let’s examine each option carefully.
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Option (i): "electrons of carbon-hydrogen σ bond of an alkyl group directly attached to an atom of unsaturated system."
This is a textbook description of hyperconjugation in alkenes or arenes. For example, in propene (), the C–H σ bonds of the methyl group overlap with the π* orbital of the double bond, delocalising electron density. This stabilises the alkene and explains why more substituted alkenes are more stable. So (i) is correct.
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Option (ii): "electrons of carbon-hydrogen σ bond of alkyl group directly attached to the positively charged carbon atom."
This is hyperconjugation in carbocations. In the ethyl carbocation (), the C–H σ bonds on the methyl group overlap with the empty p orbital on the positively charged carbon, delocalising the positive charge. This is why tertiary carbocations are more stable than primary ones. So (ii) is correct.
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Option (iii): "π-electrons of carbon-carbon bond."
Delocalisation of π-electrons is resonance (mesomeric effect), not hyperconjugation. Hyperconjugation specifically involves σ-bond electrons (or sometimes lone pairs, but not π-electrons of a C=C bond). So (iii) is incorrect.
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Option (iv): "lone pair of electrons." …
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