Organic Chemistry - Standalone book
Organic Chemistry - Standalone book
10th Edition
ISBN: 9780073511214
Author: Francis A Carey Dr., Robert M. Giuliano
Publisher: McGraw-Hill Education
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Chapter 13, Problem 62DSP
Interpretation Introduction

Interpretation:

The isomer of bromodimethylbenzene that cannot undergo nucleophilic aromatic substitution by treatment with sodium amide in liquid ammonia is to be determined.

Concept introduction:

Aryl halides in the presence of a strong base, undergo substitution via elimination-addition mechanism.

In the first step, the base abstracts a proton attached to the ring carbon atom which is adjacent to the halogen. The proton and the halogen from adjacent carbon atoms are eliminated, and triple bond is created. The intermediate formed is benzyne.

The nucleophile then adds to any one of the triple bonded carbon atoms of the benzyne.

For the formation of the benzyne intermediate, it is necessary that one hydrogen atom be attached to the carbon atoms adjacent to the one that bears the halogen.

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Butanone undergoes a nucleophilic addition with a Grignard reagent made from 1-bromopropane and magnesium metal in THF solution. The alkoxide formed from the nucleophilic addition is then conveted into the final product by the careful addition of dilute acid. Complete the mechanism by following the instructions provided for each step. Step 1. Nucleophilic Addition in THF
. Write short notes on the following, mentioning reagents, reaction conditions, products formed, mechanism, purification and precautions where necessary• Hydrolysis of 2-bromo-2-methylbutane• Nitration of benzene• Reduction of Nitrobenzene• Ammonolysis of benzoylchloride• Ozonolysis of 2-methylbut-2-ene
State the characteristic of the SN2 and SN1 mechanism towards alkyl halide compounds based onmolecularity, reaction rate constant, formation of product(s), reactivity of alkyl halides and thestrength of nucleophile.

Chapter 13 Solutions

Organic Chemistry - Standalone book

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