Hyperconjugation

Hyperconjugation is the delocalization of electrons from a sigma bond, typically C–H or C–C, into an adjacent empty p orbital or pi system, influencing molecular stability and structure. This interaction occurs when neighboring orbitals achieve suitable alignment, allowing sigma electrons to spread over multiple atoms and lowering the molecule’s overall energy. Hyperconjugation helps explain the stability of carbocations, carbon-centered radicals, and substituted alkenes, as well as trends in alkene geometry, bond lengths, and conformational preference. In organic chemistry, it supports predictions of reaction intermediates, regioselectivity, and substitution effects, linking molecular orbital theory to observable reactivity.

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JoVE Science Education - Chemistry

Nucleophilic Substitution

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2023

Source: Vy M. Dong and Daniel Kim, Department of Chemistry, University of California, Irvine, CA Nucleophilic substitution reactions are among the most fundamental topics covered in organic chemistry. A nucleophilic substitution reaction is one where a nucleophile (electron-rich Lewis base) replaces a leaving group from a carbon atom. SN1 (S = Substitution, N = Nucleophilic, 1 = first-order kinetics) SN2 (S = Substitution, N = Nucleophilic, 2 = second-order kinetics) This video will help to...

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