JoVE Logo

登录

α,β-Unsaturated carbonyl compounds with two electrophilic sites, the carbonyl carbon, and the β carbon, are susceptible to nucleophilic attack via two modes: conjugate or 1,4-addition and direct or 1,2-addition.

Conjugate addition results in a thermodynamically stable product. The reaction retains the stronger C=O bond at the expense of the weaker C=C π bond. The process is slow as the β carbon is less electrophilic than the carbonyl carbon.

Direct addition products are formed faster owing to the greater electrophilicity of the carbonyl carbon. The process is said to be under kinetic control and yields a less stable product due to the loss of the stronger C=O π bond.

One of the factors that decide the predominant product is the nature of the nucleophile. Generally, stronger nucleophiles such as lithium aluminum hydride, Grignard reagents, and organolithium reagents favor 1,2-addition. However, Grignard reagents can also yield a mixture of products. Thus, organolithium reagents are used to obtain the primarily direct addition product, while weaker nucleophiles such as lithium diorganocuprates, primary amines, and thiolates yield the conjugate addition product.

Tags

Conjugate Addition14 additionDirect Addition12 additionUnsaturated Carbonyl CompoundsElectrophilic SitesNucleophilic AttackThermodynamic StabilityC O BondKinetic ControlStronger NucleophilesLithium Aluminum HydrideGrignard ReagentsOrganolithium ReagentsLithium Diorganocuprates

来自章节 15:

article

Now Playing

15.36 : Conjugate Addition (1,4-Addition) vs Direct Addition (1,2-Addition)

α-Carbon Chemistry: Enols, Enolates, and Enamines

3.0K Views

article

15.1 : 烯醇的反应性

α-Carbon Chemistry: Enols, Enolates, and Enamines

2.9K Views

article

15.2 : 烯醇化根离子的反应性

α-Carbon Chemistry: Enols, Enolates, and Enamines

2.4K Views

article

15.3 : 烯醇和烯醇酸盐的类型

α-Carbon Chemistry: Enols, Enolates, and Enamines

2.5K Views

article

15.4 : 烯醇化机制约定

α-Carbon Chemistry: Enols, Enolates, and Enamines

2.0K Views

article

15.5 : 烯醇酸盐的区域选择性形成

α-Carbon Chemistry: Enols, Enolates, and Enamines

2.5K Views

article

15.6 : 烯醇化的立体化学效应

α-Carbon Chemistry: Enols, Enolates, and Enamines

2.0K Views

article

15.7 : 醛和酮的酸催化 α-卤化反应

α-Carbon Chemistry: Enols, Enolates, and Enamines

3.5K Views

article

15.8 : 醛和酮的碱促进α卤化

α-Carbon Chemistry: Enols, Enolates, and Enamines

3.3K Views

article

15.9 : 甲基酮的多次卤化:卤仿反应

α-Carbon Chemistry: Enols, Enolates, and Enamines

1.9K Views

article

15.10 : 羧酸衍生物的 α-卤化:概述

α-Carbon Chemistry: Enols, Enolates, and Enamines

3.2K Views

article

15.11 : 羧酸的 α-溴化反应:Hell-Volhard-Zelinski 反应

α-Carbon Chemistry: Enols, Enolates, and Enamines

2.9K Views

article

15.12 : α-卤羰基化合物的反应:亲核取代

α-Carbon Chemistry: Enols, Enolates, and Enamines

3.2K Views

article

15.13 : 烯醇的亚硝化

α-Carbon Chemistry: Enols, Enolates, and Enamines

2.4K Views

article

15.14 : C-C 键形成:羟醛缩合概述

α-Carbon Chemistry: Enols, Enolates, and Enamines

13.4K Views

See More

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。