eEtherification:一种电化学策略,用于从活性酒精中合成绝缘阻碍的二甲基乙烯
Cyrille Kiaku1, Simon Kaltenberger1, Daniel Raydan1
1School of Science, Faculty of Engineering and Science, University of Greenwich, Chatham, Kent ME4 4TB, U.K.
通过一种新的电化学方法,合成固态阻碍的. 这种实用方法避免了恶劣的条件和牺牲氧化剂,为酒精功能化提供了经济有效的替代方案.
科学领域:
- 有机化学 有机化学
- 合成化学 合成化学
- 电化学 电化学 电化学
背景情况:
- 传统的以太化方法与硬质阻碍的基乙烯斗争.
- 现有的方法通常需要恶劣的条件,过渡金属催化剂或外部减速剂.
研究的目的:
- 开发一种新,温和和实用的电化学方法来合成无菌阻碍的以太.
- 为现有的以太化协议提供一个具有成本效益和广泛适用的替代方案.
主要方法:
- 通过电化学合成,从酒精中制造出硬质阻碍乙烯.
- 在温和条件下生成活性碳酸盐.
- 无牺牲氧化剂的酒精核友对碳酸盐的核友捕获.
主要成果:
- 通过电化学方法成功合成了经过绝缘阻碍的以太.
- 对易于获得的酒精适用的温和和实用的协议的演示.
- 实现了具有成本效益和广泛范围的以太化.
结论:
- 开发的电化学方法提供了一个高效和实用的途径,以 sterically 阻碍的以太.
- 该协议扩展了以太合成的合成工具包,特别是在具有挑战性的基板上.
- 该方法的实用性和成本效益使其对合成化学家有价值.
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相关概念视频
Ethers from Alcohols: Alcohol Dehydration and Williamson Ether Synthesis
Ethers can be prepared from organic compounds by various methods. Some of them are discussed below,
Preparation of Ethers by Alcohol Dehydration
In this method, in the presence of protic acids, alcohol dehydrates to produce alkenes and ethers under different conditions. For example, in the presence of sulphuric acid, dehydration of ethanol at 413 K yields ethoxyethane, whereas it yields ethene at 443 K.
Ethers from Alkenes: Alcohol Addition and Alkoxymercuration-Demercuration
Ethers can also be prepared from alkenes through acid-catalyzed addition of alcohols and alkoxymercuration–demercuration.
Preparation of Ethers by Acid-Catalyzed Addition of Alcohol to Alkenes
The acid-catalyzed addition of alcohol to an alkene involves treating the alkene with an excess of alcohol in the presence of an acid catalyst to form an ether under suitable conditions. The hydrogen will add to the less substituted carbon so that the nucleophile can attack the more...
Preparation of Alcohols via Addition Reactions
The acid-catalyzed addition of water to the double bond of alkenes is a large-scale industrial method used to synthesize low-molecular-weight alcohols. An acidic atmosphere is required to allow the hydrogen in the water molecule to act as an electrophile and attack the double bond in an alkene. The addition of a proton to the double bond creates a carbocation intermediate. The proton preferentially bonds to the less substituted end of the double bond to create a more stable carbocation...
Preparation of Epoxides
Epoxides result from alkene oxidation, which can be achieved by a) air, b) peroxy acids, c) hypochlorous acids, and d) halohydrin cyclization.
Epoxidation with Peroxy Acids
Epoxidation of alkenes via oxidation with peroxy acids involves the conversion of a carbon–carbon double bond to an epoxide using the oxidizing agent meta-chloroperoxybenzoic acid, commonly known as MCPBA. Since the O–O bond of peroxy acids is very weak, the addition of electrophilic oxygen of...
Oxidation of Alkenes: Syn Dihydroxylation with Osmium Tetraoxide
Acid-Catalyzed Dehydration of Alcohols to Alkenes
