
Rearrangement of an oxime to an amide in the presence of a strong acid is called
Answer
233.1k+ views
Hint: We know that,one example of functional group is imine whose formula is \[{\rm{C}} = {\rm{N}}\] .The oxime is an organic compound that belongs to the class of imines. The chemical formula to reprsent oxime is \[{{\rm{R}}_{\rm{1}}}{{\rm{R}}_2}{\rm{C}} = {\rm{NOH}}\] . Here, \[{{\rm{R}}_{\rm{1}}}\] indicates an alkyl group and \[{{\rm{R}}_2}\] represents a hydrogen atom.
Complete Step by Step Solution:
Let's understand what an amide is. An amide is a functional group of the formula \[{\rm{R}} - {\rm{CO}} - {\rm{N}}{{\rm{H}}_{\rm{2}}}\] . When a molecule of ammonia is added to a carboxylic acid, an amide is formed.
Let's understand the Beckmann rearrangement in detail. In this reaction, an oxime is converted into an amide in an acidic medium. Let's understand the mechanism of the reaction in detail.
In the first step, a proton is accepted by the oxygen atom of the oxime. Then, the water molecule separates and a proton is accepted by the nitrogen atom. In the third step, a nucleophilic attack of the Oxygen atom of the water molecule at the carbocation takes place. In the fourth step, deprotonation occurs and alcohol forms. In the last step, rearrangement of hydrogen atoms occurs which results in the formation of an amide.

Image: Beckmann Rearrangement
Hence, the rearrangement of an oxime to amide in an acidic medium is called Beckmann rearrangement.
Note: It is to be noted that, the imine functional group is considered a Schiff's base if the group bonded to the N atom is not an atom of Hydrogen. The preparation of imine is done by the reaction of a ketone, an aldehyde and hydroxylamine.
Complete Step by Step Solution:
Let's understand what an amide is. An amide is a functional group of the formula \[{\rm{R}} - {\rm{CO}} - {\rm{N}}{{\rm{H}}_{\rm{2}}}\] . When a molecule of ammonia is added to a carboxylic acid, an amide is formed.
Let's understand the Beckmann rearrangement in detail. In this reaction, an oxime is converted into an amide in an acidic medium. Let's understand the mechanism of the reaction in detail.
In the first step, a proton is accepted by the oxygen atom of the oxime. Then, the water molecule separates and a proton is accepted by the nitrogen atom. In the third step, a nucleophilic attack of the Oxygen atom of the water molecule at the carbocation takes place. In the fourth step, deprotonation occurs and alcohol forms. In the last step, rearrangement of hydrogen atoms occurs which results in the formation of an amide.

Image: Beckmann Rearrangement
Hence, the rearrangement of an oxime to amide in an acidic medium is called Beckmann rearrangement.
Note: It is to be noted that, the imine functional group is considered a Schiff's base if the group bonded to the N atom is not an atom of Hydrogen. The preparation of imine is done by the reaction of a ketone, an aldehyde and hydroxylamine.
Recently Updated Pages
JEE Main 2023 April 6 Shift 1 Question Paper with Answer Key

JEE Main 2023 April 6 Shift 2 Question Paper with Answer Key

JEE Main 2023 (January 31 Evening Shift) Question Paper with Solutions [PDF]

JEE Main 2023 January 30 Shift 2 Question Paper with Answer Key

JEE Main 2023 January 25 Shift 1 Question Paper with Answer Key

JEE Main 2023 January 24 Shift 2 Question Paper with Answer Key

Trending doubts
JEE Main 2026: Session 2 Registration Open, City Intimation Slip, Exam Dates, Syllabus & Eligibility

JEE Main 2026 Application Login: Direct Link, Registration, Form Fill, and Steps

JEE Main Marking Scheme 2026- Paper-Wise Marks Distribution and Negative Marking Details

Understanding the Angle of Deviation in a Prism

Hybridisation in Chemistry – Concept, Types & Applications

How to Convert a Galvanometer into an Ammeter or Voltmeter

Other Pages
JEE Advanced Marks vs Ranks 2025: Understanding Category-wise Qualifying Marks and Previous Year Cut-offs

NCERT Solutions For Class 12 Chemistry Chapter 1 Solutions (2025-26)

Solutions Class 12 Chemistry Chapter 1 CBSE Notes - 2025-26

NCERT Solutions For Class 12 Chemistry Chapter 4 The d and f Block Elements (2025-26)

Biomolecules Class 12 Chemistry Chapter 10 CBSE Notes - 2025-26

NCERT Solutions For Class 12 Chemistry Chapter 10 Biomolecules (2025-26)

