JoVE Logo

Accedi

16.2 : Stability of Conjugated Dienes

Introduction

A comparison of the enthalpies of hydrogenation of dienes reveals that conjugated dienes release less heat on hydrogenation, rendering them more stable than their nonconjugated analogs.

Figure1

The two main factors contributing to the enhanced stability of conjugated systems are the delocalization of π electrons and the sp2 hybridization of the carbons forming the single bonds.

Planar Conformers of Conjugated Dienes

Conjugated dienes adopt two planar configurations, s-cis and s-trans, where the unhybridized p orbitals are aligned parallel to each other, facilitating the delocalization of π electrons across the molecule. The s-cis and s-trans conformers of 1,3-butadiene are shown below.

Figure2

The prefix “s” describes the orientation of the double bonds about the C–C single bond. The conformers undergo rapid internal conversion at room temperature via rotation around the central single bond. In the s-cis form, the two double bonds are on the same side of the single bond and have a dihedral angle of 0°. In s-trans, they are on the opposite sides with a dihedral angle of 180°. The s-cis conformer is less stable than the s-trans conformer due to the steric interaction between the two hydrogens as shown below.

Figure3

Tags

Conjugated DienesHydrogenationEnthalpyDelocalizationSp2 HybridizationPlanar ConformersS cisS transInternal ConversionDihedral AngleSteric Interaction

Dal capitolo 16:

article

Now Playing

16.2 : Stability of Conjugated Dienes

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

3.2K Visualizzazioni

article

16.1 : Struttura dei dieni coniugati

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

4.8K Visualizzazioni

article

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

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

8.6K Visualizzazioni

article

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

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

4.1K Visualizzazioni

article

16.5 : π Orbitali molecolari del radicale allile

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

3.3K 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

5.3K Visualizzazioni

article

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

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

2.3K Visualizzazioni

article

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

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

2.5K Visualizzazioni

article

16.9 : Spettroscopia UV-Vis di sistemi coniugati

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

6.8K Visualizzazioni

article

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

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

23.7K Visualizzazioni

article

16.11 : Reazioni pericicliche: Introduzione

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

8.2K Visualizzazioni

article

16.12 : Reazioni elettrocicliche termiche e fotochimiche: panoramica

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

2.3K Visualizzazioni

article

16.13 : Reazioni Elettrocicliche Termiche: Stereochimica

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

2.0K Visualizzazioni

article

16.14 : Reazioni elettrocicliche fotochimiche: stereochimica

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

1.8K Visualizzazioni

article

16.15 : Reazioni di cicloaddizione: panoramica

Dienes, Conjugated Pi Systems, and Pericyclic Reactions

2.5K Visualizzazioni

See More

JoVE Logo

Riservatezza

Condizioni di utilizzo

Politiche

Ricerca

Didattica

CHI SIAMO

Copyright © 2025 MyJoVE Corporation. Tutti i diritti riservati