Several additional amine syntheses are effectively limited to making primary amines. The reduction of azides and nitrocompounds and the Gabriel synthesis leave the carbon chain unchanged. Formation and reduction of a nitrile adds onecarbon atom. Show how these amine syntheses can be used for the following conversions. (c) 1@bromo@3@phenylheptane S 3@phenylheptan@1@amine (d) 1@bromo@3@phenylheptane S 4@phenyloctan@1@amine
Several additional amine syntheses are effectively limited to making primary amines. The reduction of azides and nitrocompounds and the Gabriel synthesis leave the carbon chain unchanged. Formation and reduction of a nitrile adds onecarbon atom. Show how these amine syntheses can be used for the following conversions. (c) 1@bromo@3@phenylheptane S 3@phenylheptan@1@amine (d) 1@bromo@3@phenylheptane S 4@phenyloctan@1@amine
Organic Chemistry
8th Edition
ISBN:9781305580350
Author:William H. Brown, Brent L. Iverson, Eric Anslyn, Christopher S. Foote
Publisher:William H. Brown, Brent L. Iverson, Eric Anslyn, Christopher S. Foote
Chapter18: Functional Derivatives Of Carboxylic Acids
Section: Chapter Questions
Problem 18.59P
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Several additional amine syntheses are effectively limited to making primary
compounds and the Gabriel synthesis leave the carbon chain unchanged. Formation and reduction of a nitrile adds one
carbon atom. Show how these amine syntheses can be used for the following conversions.
(c) 1@bromo@3@phenylheptane S 3@phenylheptan@1@amine (d) 1@bromo@3@phenylheptane S 4@phenyloctan@1@amine
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