What is the reason of providing a mild acid condition for the preparation of imine? O Mild acid will protonate the hydroxyl group of the aminoalcohol intermediate without protonating the nitrogen of the amine starting materials. O Strong acid will rapidly neutralize the amine starting materials before any reaction can occur. O Strong acid condition will alter the structure of aldehyde or ketone as the strong acid will attach to the carbonyl oxygen of aldehyde or ketone making it least nucleophilic. O Mild acid will protonate the aldehyde and ketones readily rather than the strong acid.

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
Chapter23: Amines
Section: Chapter Questions
Problem 23.71P
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What is the reason of providing a mild acid condition for the preparation of imine?
Mild acid will protonate the hydroxyl group of the aminoalcohol intermediate without protonating the nitrogen of the
amine starting materials.
O Strong acid will rapidly neutralize the amine starting materials before any reaction can occur.
Strong acid condition will alter the structure of aldehyde or ketone as the strong acid will attach to the carbonyl oxygen of
aldehyde or ketone making it least nucleophilic.
Mild acid will protonate the aldehyde and ketones readily rather than the strong acid.
Transcribed Image Text:What is the reason of providing a mild acid condition for the preparation of imine? Mild acid will protonate the hydroxyl group of the aminoalcohol intermediate without protonating the nitrogen of the amine starting materials. O Strong acid will rapidly neutralize the amine starting materials before any reaction can occur. Strong acid condition will alter the structure of aldehyde or ketone as the strong acid will attach to the carbonyl oxygen of aldehyde or ketone making it least nucleophilic. Mild acid will protonate the aldehyde and ketones readily rather than the strong acid.
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