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16.1 : Structure of Conjugated Dienes

Introduction

Conjugated dienes are compounds characterized by the presence of alternating double and single bonds. In a conjugated system like 1,3-butadiene, the unhybridized 2p orbital on each carbon overlaps continuously, allowing the π electrons to be delocalized across the entire molecule. In contrast, this type of overlap does not occur in cumulated and isolated dienes, such as 2,3-pentadiene and 1,4-pentadiene, respectively. Instead, the π electrons remain localized between the double bonds.

1,3-Butadiene chemical structure, CH2=CH-CH=CH2, molecular formula diagram for study. 2,3-Pentadiene chemical structure, illustrating molecular formula H3C-CH=C=CH-CH3. 1,4-Pentadiene chemical structure; molecular formula of CH2=CH-CH2-CH=CH2; organic compound.
Conjugated diene Cumulated diene Isolated diene

Synthesis of Conjugated Dienes

There are two common approaches for preparing conjugated dienes:

1. From allylic halides: Allylic halides undergo dehydrohalogenation in the presence of potassium tert-butoxide to form conjugated dienes.

Chemical reaction diagram: Elimination reaction from 3-Bromo-1-butene to 1,3-Butadiene using t-BuOK.

2. From alcohols: Double dehydration of diols in the presence of aluminum oxide gives conjugated dienes.

Dehydration reaction diagram, 3-methyl-1,3-butanediol to 2-methyl-1,3-butadiene.

Configurational Isomerism

The double bonds in substituted conjugated dienes can adopt an E or a Z configuration and exhibit configurational isomerism. For example, 1-chloro-2,4-heptadiene has four configurational isomers, as shown below.

Chlorinated heptadiene isomers; molecular structures; chemical diagram; structural comparison.

Tags

Conjugated DienesDelocalized electronsCumulated DienesIsolated DienesDehydrohalogenationDouble DehydrationConfigurational IsomerismE Z Isomers

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