登录

Alkenes can be dihydroxylated using potassium permanganate. The method encompasses the reaction of an alkene with a cold, dilute solution of potassium permanganate under basic conditions to form a cis-diol along with a brown precipitate of manganese dioxide.

Figure1

The mechanism begins with the syn addition of a permanganate ion (MnO4) across the same side of the alkene π bond, forming a cyclic manganate ester intermediate. Next, the hydrolysis of the cyclic ester with water gives a cis-diol with the retention of stereochemistry at the newly formed C–O bonds.

Figure2

Potassium permanganate is inexpensive and safer compared to osmium tetroxide. However, its strong oxidizing nature leads to over-oxidation of the diol, thereby giving poor yields.

Syn Dihydroxylation with Hot Basic Potassium Permanganate

When hot potassium permanganate is used, it oxidatively cleaves the carbon–carbon double bond, forming ketones or acids depending on the nature of the substituents on the alkene. Thus, terminal alkenes are oxidized to form carbon dioxide, while monosubstituted and disubstituted alkenes give carboxylic acids and ketones, respectively.

Figure3

Qualitative Analysis Using Potassium Permanganate

The basic potassium permanganate solution is also known as Baeyer's reagent, which is used in qualitative analysis to determine the presence of olefinic double bonds. During the reaction, the deep purple color of potassium permanganate solution decolorizes with the formation of a brown precipitate of manganese dioxide.

Tags

OxidationAlkenesSyn DihydroxylationPotassium PermanganateReactionCis diolManganese DioxideMechanismCyclic Manganate Ester IntermediateHydrolysisStereochemistryOver oxidationYieldsHot Basic Potassium PermanganateOxidatively CleavesCarbon carbon Double BondKetonesAcidsSubstituentsTerminal AlkenesCarboxylic AcidsKetonesQualitative AnalysisBaeyer s Reagent

来自章节 8:

article

Now Playing

8.11 : Oxidation of Alkenes: Syn Dihydroxylation with Potassium Permanganate

烯烃的反应

10.2K Views

article

8.1 : 亲电加成剂的区域选择性 - 过氧化物效应

烯烃的反应

8.0K Views

article

8.2 : 烯烃的自由基链式反应和聚合

烯烃的反应

7.3K Views

article

8.3 : 烯烃的卤化

烯烃的反应

14.8K Views

article

8.4 : 烯烃形成卤醇

烯烃的反应

12.4K Views

article

8.5 : 烯烃的酸催化水合

烯烃的反应

12.9K Views

article

8.6 : 酸催化水合的区域选择性和立体化学

烯烃的反应

8.2K Views

article

8.7 : 氧汞化 - 烯烃的还原

烯烃的反应

7.1K Views

article

8.8 : 硼氢化-烯烃的氧化

烯烃的反应

7.3K Views

article

8.9 : 硼氢化的区域选择性和立体化学

烯烃的反应

7.9K Views

article

8.10 : 烯烃的氧化:Syn 二羟基化与四氧化锇

烯烃的反应

9.5K Views

article

8.12 : 烯烃的氧化:过氧酸的抗二羟基化

烯烃的反应

5.2K Views

article

8.13 : 烯烃的氧化裂解:臭氧分解

烯烃的反应

9.5K Views

article

8.14 : 烯烃的还原:催化加氢

烯烃的反应

11.5K Views

article

8.15 : 烯烃的还原:不对称催化加氢

烯烃的反应

3.2K Views

JoVE Logo

政策

使用条款

隐私

科研

教育

关于 JoVE

版权所属 © 2025 MyJoVE 公司版权所有,本公司不涉及任何医疗业务和医疗服务。