Accedi

Neutral hydrocarbons like cyclopentadiene with an odd number of carbon atoms and one intervening CH2 group in the ring are not aromatic. Cyclopentadiene with 4 π electrons does not satisfy the 4n + 2 π electron rule. Additionally, the intervening CH2 group is sp3 hybridized and lacks a vacant p orbital, thereby interrupting the overlap of p orbitals in a continuous manner and preventing the delocalization of π electrons throughout the ring.

Due to the absence of continuous overlap of p orbitals, cyclopentadiene does not comply with aromaticity criteria. However, the removal of one hydrogen with both or one or no electrons from the CH2 group drives the conversion of sp3 carbon to sp2, thereby converting cyclopentadiene into cyclopentadienyl cation, radical, and anion, respectively, having a vacant p orbital. Among all the three species, cyclopentadienyl cation and radical with four and five π electrons, respectively, do not meet the criteria of 4n + 2 π electrons and are not aromatic. On the other hand, cyclopentadienyl anion with 6 π electrons, a continuous overlapping ring of p orbitals, and delocalized π electron density becomes aromatic. The electrostatic potential map of the anion corroborates the delocalization of π electrons throughout the ring. Moreover, the five resonance structures of cyclopentadienyl anion and the occupancy of bonding molecular orbitals by all 6 π electrons in the frost diagram validate the unusual stability of the anion.

Tags

Aromatic Hydrocarbon AnionsCyclopentadieneCyclopentadienyl CationCyclopentadienyl RadicalCyclopentadienyl AnionAromaticity4n 2 RuleDelocalizationP Orbital OverlapElectrostatic Potential MapResonance StructuresFrost Diagram

Dal capitolo 17:

article

Now Playing

17.9 : Aromatic Hydrocarbon Anions: Structural Overview

Aromatic Compounds

2.5K Visualizzazioni

article

17.1 : Composti aromatici: panoramica

Aromatic Compounds

9.4K Visualizzazioni

article

17.2 : Nomenclatura dei composti aromatici con un solo sostituente

Aromatic Compounds

7.1K Visualizzazioni

article

17.3 : Nomenclatura dei composti aromatici con sostituenti multipli

Aromatic Compounds

6.9K Visualizzazioni

article

17.4 : Struttura del benzene: modello di Kekulé

Aromatic Compounds

7.8K Visualizzazioni

article

17.5 : Struttura del benzene: modello orbitale molecolare

Aromatic Compounds

8.2K Visualizzazioni

article

17.6 : Criteri per l'aromaticità e la regola di Hückel 4n + 2

Aromatic Compounds

9.3K Visualizzazioni

article

17.7 : Diagramma delle regole di Hückel dei π MO: Frost Circle

Aromatic Compounds

4.2K Visualizzazioni

article

17.8 : Cerchi di gelo per diversi sistemi coniugati

Aromatic Compounds

2.5K Visualizzazioni

article

17.10 : Cationi degli idrocarburi aromatici: panoramica strutturale

Aromatic Compounds

2.6K Visualizzazioni

article

17.11 : Composti aromatici eterociclici a cinque membri: panoramica

Aromatic Compounds

3.5K Visualizzazioni

article

17.12 : Spettroscopia NMR di composti aromatici

Aromatic Compounds

4.2K Visualizzazioni

JoVE Logo

Riservatezza

Condizioni di utilizzo

Politiche

Ricerca

Didattica

CHI SIAMO

Copyright © 2025 MyJoVE Corporation. Tutti i diritti riservati