使用三溴化磷和溴的混合物获得 α-溴化羧酸的方法被称为 Hell-Volhard-Zelinski 反应。 该反应由三溴化磷催化,三溴化磷可以直接使用,也可以由红磷和溴原位生产。 其机理包括PBr3催化酸转化为酰基溴和溴化氢。 在 HBr 存在下,酰基溴烯醇化为其烯醇形式。 亲核烯醇攻击溴分子,得到α-溴酸溴。 所得分子在随后水解后产生所需的 α-溴酸。
来自章节 15:
Now Playing
α-Carbon Chemistry: Enols, Enolates, and Enamines
2.9K Views
α-Carbon Chemistry: Enols, Enolates, and Enamines
3.0K Views
α-Carbon Chemistry: Enols, Enolates, and Enamines
2.5K Views
α-Carbon Chemistry: Enols, Enolates, and Enamines
2.5K Views
α-Carbon Chemistry: Enols, Enolates, and Enamines
2.1K Views
α-Carbon Chemistry: Enols, Enolates, and Enamines
2.5K Views
α-Carbon Chemistry: Enols, Enolates, and Enamines
2.0K Views
α-Carbon Chemistry: Enols, Enolates, and Enamines
3.6K Views
α-Carbon Chemistry: Enols, Enolates, and Enamines
3.4K Views
α-Carbon Chemistry: Enols, Enolates, and Enamines
2.0K Views
α-Carbon Chemistry: Enols, Enolates, and Enamines
3.3K Views
α-Carbon Chemistry: Enols, Enolates, and Enamines
3.2K Views
α-Carbon Chemistry: Enols, Enolates, and Enamines
2.5K Views
α-Carbon Chemistry: Enols, Enolates, and Enamines
13.5K Views
α-Carbon Chemistry: Enols, Enolates, and Enamines
3.2K Views
See More
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。