S'identifier

In a Diels–Alder reaction, the diene is usually an electron-rich system and acts as a nucleophile, whereas the dienophile is electron-deficient and functions as an electrophile. Much like the diene, the nature of the dienophile significantly impacts the outcome of the reaction.

Characteristics of Dienophiles

Generally, the best dienophiles are alkenes containing electron-withdrawing substituents such as carbonyl, nitrile, and nitro groups. The feasibility of a Diels–Alder reaction depends on the energy difference between the HOMO of the diene and the LUMO of the dienophile. The smaller the HOMO–LUMO gap, the faster the reaction. Electron-withdrawing substituents on the dienophile lower the energy of the LUMO, reducing the HOMO–LUMO gap and speeding up the reaction.

Figure1

With 1,2-disubstituted dienophiles, the stereochemistry of the double bond is preserved, leading to stereospecific outcomes.

Figure2

Cyclic dienophiles give bicyclic products.

Figure3

Tags

Diels Alder ReactionDienophilesElectron rich SystemNucleophileElectron deficientElectrophileElectron withdrawing SubstituentsCarbonylNitrileNitro GroupsHOMOLUMOStereochemistryBicyclic Products

Du chapitre 16:

article

Now Playing

16.23 : Diels–Alder Reaction: Characteristics of Dienophiles

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

5.7K Vues

article

16.1 : Structure des diènes conjugués

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

4.3K Vues

article

16.2 : Stabilité des diènes conjugués

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

3.1K Vues

article

16.3 : π orbitales moléculaires du 1,3-butadiène

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

8.1K Vues

article

16.4 : π orbitales moléculaires du cation allyle et de l’anion

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

3.9K Vues

article

16.5 : π orbitales moléculaires du radical allyle

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

3.3K Vues

article

16.6 : Addition électrophile de 1,2- et 1,4-HX au 1,3-butadiène

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

4.7K Vues

article

16.7 : Addition électrophile de 1,2- et 1,4 de x2 à 1,3-butadiène

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

2.2K Vues

article

16.8 : Ajout électrophile de HX au 1,3-butadiène : contrôle thermodynamique et contrôle cinétique

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

2.3K Vues

article

16.9 : Spectroscopie UV-Vis des systèmes conjugués

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

6.6K Vues

article

16.10 : Spectroscopie UV-Vis : règles de Woodward-Fieser

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

22.6K Vues

article

16.11 : Réactions péricycliques : Introduction

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

7.3K Vues

article

16.12 : Réactions électrocycliques thermiques et photochimiques : aperçu

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

2.2K Vues

article

16.13 : Réactions électrocycliques thermiques : stéréochimie

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

1.9K Vues

article

16.14 : Réactions électrocycliques photochimiques : stéréochimie

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

1.7K Vues

See More

JoVE Logo

Confidentialité

Conditions d'utilisation

Politiques

Recherche

Enseignement

À PROPOS DE JoVE

Copyright © 2025 MyJoVE Corporation. Tous droits réservés.