Accedi

Allyl radicals are three-carbon conjugated systems. They are readily formed as intermediates in halogenation reactions of alkenes involving the addition of halogen to the allylic carbon instead of the double bond. As seen in allyl cations and anions, each of the three sp2-hybridized carbon atoms in allyl radicals has an unhybridized p orbital. These orbitals combine to give three π molecular orbitals.

The allyl systems have identical molecular orbitals but differ in the number of π electrons. While the allyl cations and anions have two and four π electrons, respectively, allyl radicals are systems with three π electrons. Irrespective of the ion or the radical, the first two electrons occupy the bonding molecular orbital, ψ1. The difference arises in the electron occupancy of the nonbonding molecular orbital, ψ2, which is unoccupied in the allyl cation, singly occupied in the radical, and fully occupied in the anion. Accordingly, the highest occupied molecular orbital (HOMO) and the lowest unoccupied molecular orbital (LUMO) vary across the allyl system. Since the HOMO in allyl radicals is singly occupied, it is also referred to as the singly occupied molecular orbital, or SOMO, as shown below.

Figure1

Tags
Allyl RadicalMolecular OrbitalsSp2 hybridized CarbonHalogenation ReactionsP OrbitalBonding Molecular OrbitalNonbonding Molecular OrbitalHOMOLUMOSOMOAllyl CationsAllyl AnionsConjugated Systems

Dal capitolo 16:

article

Now Playing

16.5 : π Molecular Orbitals of the Allyl Radical

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

3.2K Visualizzazioni

article

16.1 : Struttura dei dieni coniugati

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

4.2K Visualizzazioni

article

16.2 : Stabilità dei dieni coniugati

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

3.1K Visualizzazioni

article

16.3 : π Orbitali molecolari dell'1,3-butadiene

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

8.0K Visualizzazioni

article

16.4 : π Orbitali molecolari del catione allile e dell'anione

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

3.9K Visualizzazioni

article

16.6 : Addizione elettrofila di 1,2 e 1,4 di HX a 1,3-butadiene

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

4.6K Visualizzazioni

article

16.7 : Addizione elettrofila di X2 a 1,3-butadiene

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

2.2K Visualizzazioni

article

16.8 : Addizione elettrofila di HX all'1,3-butadiene: controllo termodinamico vs controllo cinetico

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

2.3K Visualizzazioni

article

16.9 : Spettroscopia UV-Vis di sistemi coniugati

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

6.6K Visualizzazioni

article

16.10 : Spettroscopia UV-Vis: Regole di Woodward-Fieser

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

22.5K Visualizzazioni

article

16.11 : Reazioni pericicliche: Introduzione

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

7.1K Visualizzazioni

article

16.12 : Reazioni elettrocicliche termiche e fotochimiche: panoramica

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

2.2K Visualizzazioni

article

16.13 : Reazioni Elettrocicliche Termiche: Stereochimica

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

1.9K Visualizzazioni

article

16.14 : Reazioni elettrocicliche fotochimiche: stereochimica

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

1.7K Visualizzazioni

article

16.15 : Reazioni di cicloaddizione: panoramica

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

2.4K Visualizzazioni

See More

JoVE Logo

Riservatezza

Condizioni di utilizzo

Politiche

Ricerca

Didattica

CHI SIAMO

Copyright © 2025 MyJoVE Corporation. Tutti i diritti riservati