ORGANIC CHEMISTRY E-BOOK W/SMARTWORK5
ORGANIC CHEMISTRY E-BOOK W/SMARTWORK5
2nd Edition
ISBN: 9780393664034
Author: KARTY
Publisher: NORTON
Question
Book Icon
Chapter 13, Problem 13.13P
Interpretation Introduction

(a)

Interpretation:

How the given compound can be synthesized from buta-1, 3-diene is to be shown.

Concept introduction:

Electrophilic addition of a Bronsted acid to alkene proceeds via a carbocation intermediate. If the alkene is a conjugated diene, this means the carbocation is conjugated to a double bond and will exhibit resonance. This forms a mixture of products. One of the products is a 1, 2- adduct with the proton and the conjugate base of the acid added to adjacent carbons, formed from the carbocation initially produced. The other product is a 1, 4- adduct, formed from the resonance form of the carbocation. The major product is determined by the stability of the products. The 1, 2- adduct predominates at low temperatures, which means it is a kinetic product. The 1, 4- adduct predominates at higher temperatures, making it the thermodynamic product.

Interpretation Introduction

(b)

Interpretation:

How the given compound can be synthesized from buta-1, 3-diene is to be shown.

Concept introduction:

Electrophilic addition of a Bronsted acid to alkene proceeds via a carbocation intermediate. If the alkene is a conjugated diene, this means the carbocation is conjugated to a double bond and will exhibit resonance. This forms a mixture of products. One of the products is a 1, 2- adduct, with the proton and the conjugate base of the acid added to adjacent carbons formed from the carbocation initially produced. The other product is a 1, 4- adduct formed from the resonance form of the carbocation. The major product is determined by the stability of the products. The 1, 2- adduct predominates at low temperatures, which means it is a kinetic product. The 1, 4- adduct predominates at higher temperatures making it the thermodynamic product.

Interpretation Introduction

(c)

Interpretation:

How the given compound can be synthesized from buta-1, 3-diene is to be shown.

Concept introduction:

Electrophilic addition of a Bronsted acid to alkene proceeds via a carbocation intermediate. If the alkene is a conjugated diene, this means the carbocation is conjugated to a double bond and will exhibit resonance. This forms a mixture of products. One of the products is a 1, 2- adduct, with the proton and the conjugate base of the acid added to adjacent carbons formed from the carbocation initially produced. The other product is a 1, 4- adduct, formed from the resonance form of the carbocation. The major product is determined by the stability of the products. The 1, 2- adduct predominates at low temperatures, which means it is a kinetic product. The 1, 4- adduct predominates at higher temperatures making it the thermodynamic product.

A carbene, (H2C:) can be added to an alkene to introduce a cyclopropyl ring in the place of the π bond. The carbene can be conveniently produced in situ by irradiating a mixture of diazomethane and the alkene with UV light.

Interpretation Introduction

(d)

Interpretation:

How the given compound can be synthesized from buta-1, 3-diene is to be shown.

Concept introduction:

Electrophilic addition of a Bronsted acid to alkene proceeds via a carbocation intermediate. If the alkene is a conjugated diene, this means the carbocation is conjugated to a double bond and will exhibit resonance. This forms a mixture of products. One of the products is a 1, 2- adduct, with the proton and the conjugate base of the acid added to adjacent carbons formed from the carbocation initially produced. The other product is a 1, 4- adduct formed from the resonance form of the carbocation. The major product is determined by the stability of the products. The 1, 2- adduct predominates at low temperatures, which means it is a kinetic product. The 1, 4- adduct predominates at higher temperatures making it the thermodynamic product.

Blurred answer
Students have asked these similar questions
This is a hydrogenation and carbene addition problem. How do I find what the missing reactant is of the reaction?
Organic Chemistry problem. Please help solve. Provide reasonable product structure for reaction shown in the attached image. Thank you.
Solve correctly please. With explanation also. (Answer only if sure) What is the major product of the following reaction?
Knowledge Booster
Background pattern image
Similar questions
SEE MORE QUESTIONS
Recommended textbooks for you
Text book image
Organic Chemistry: A Guided Inquiry
Chemistry
ISBN:9780618974122
Author:Andrei Straumanis
Publisher:Cengage Learning