JoVE Logo

로그인

12.23 : Oxidations of Aldehydes and Ketones to Carboxylic Acids

Oxidation of aldehydes and ketones results in the formation of carboxylic acids. Aldehydes, bearing hydrogen next to the carbonyl group, are easily oxidized compared to ketones. This is because an aldehydic proton can easily be abstracted during oxidation.

Aldehydes readily undergo oxidation in strong oxidizing agents such as potassium permanganate and chromic acid. The oxidation can also be carried out using mild oxidizing agents such as silver oxide. In fact, aldehydes can be easily oxidized by atmospheric oxygen. Though stored in airtight containers to delay slow autoxidation, some aldehyde samples are contaminated with traces of carboxylic acid.

Ketones are more resistant and undergo oxidation in the presence of strong oxidizing agents at higher temperatures. The reaction is not as helpful because a mixture of carboxylic acids is obtained as a product.

In the functional-group tests, aldehydes can be differentiated from ketones and other oxidizable functional groups using Tollens’ reagent. Tollens’ reagent is a mixture of silver nitrate in aqueous ammonia to give a diaminosilver(I) ion. It is a weak oxidizing agent and can selectively oxidize aldehydes to carboxylic acid in the presence of other oxidizable functional groups. Simultaneously, the silver ion is reduced to metallic silver. The silver metal is precipitated onto the surface of the reaction vessel to give a mirror-like effect. Hence, this test is popularly known as the silver mirror test or Tollens’ test.

Figure1

Tags

AldehydeKetoneCarboxylic AcidOxidationTollens ReagentSilver Mirror TestPotassium PermanganateChromic AcidSilver OxideAutoxidation

장에서 12:

article

Now Playing

12.23 : Oxidations of Aldehydes and Ketones to Carboxylic Acids

Aldehydes and Ketones

3.6K Views

article

12.1 : 알데히드와 케톤의 구조

Aldehydes and Ketones

8.2K Views

article

12.2 : IUPAC 알데히드의 명명법

Aldehydes and Ketones

5.3K Views

article

12.3 : IUPAC 케톤의 명명법

Aldehydes and Ketones

5.4K Views

article

12.4 : 알데히드와 케톤의 일반적인 이름

Aldehydes and Ketones

3.4K Views

article

12.5 : 알데히드 및 케톤의 IR 및 UV-Vis 분광법

Aldehydes and Ketones

5.1K Views

article

12.6 : NMR 분광법 및 알데히드 및 케톤의 질량 분광법

Aldehydes and Ketones

3.6K Views

article

12.7 : Alcohols, Alkenes 및 Alkynes로부터 Aldehydes 및 Ketones의 제조

Aldehydes and Ketones

3.4K Views

article

12.8 : 니트릴과 카르복실산으로부터 알데히드와 케톤의 제조

Aldehydes and Ketones

3.3K Views

article

12.9 : 카르복실산 유도체로부터 알데히드 및 케톤의 제조

Aldehydes and Ketones

2.5K Views

article

12.10 : 카르보닐기에 친핵성 첨가: 일반 메커니즘

Aldehydes and Ketones

5.0K Views

article

12.11 : 알데히드와 케톤과 물 함유: 수분 형성

Aldehydes and Ketones

3.0K Views

article

12.12 : 알데히드와 알코올을 함유한 케톤: 헤미아세탈 형성

Aldehydes and Ketones

5.6K Views

article

12.13 : 알데히드 및 케톤에 대한 그룹 보호: 소개

Aldehydes and Ketones

6.5K Views

article

12.14 : 아세탈과 티오아세탈은 알데히드와 케톤을 위한 보호기로서

Aldehydes and Ketones

4.0K Views

See More

JoVE Logo

개인 정보 보호

이용 약관

정책

연구

교육

JoVE 소개

Copyright © 2025 MyJoVE Corporation. 판권 소유