Williamson Ether Synthesis
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C2H5ONa + CH3I → C2H5OCH3 + NaI
概述
Sodium ethoxide (an alkoxide) reacts with methyl iodide in an SN2 reaction to form ethyl methyl ether. This is the most general and reliable method for synthesizing asymmetric ethers. The alkoxide acts as the nucleophile, and a primary alkyl halide provides the best yields.
日常示例
MTBE (methyl tert-butyl ether), once the most widely used gasoline additive, was produced by a variation of ether synthesis.
工业重要性
威廉森醚合成用于工业生产苯甲醚、纤维素醚(羟乙基纤维素)和药物中间体,是有机合成的重要基础反应。
属性
- 类型
- Organic
- 可逆
- 否
- 能量
- 放热
- ΔH
- -90.0 kJ/mol
相关反应
Epoxidation of Alkenes (mCPBA)
Swern Oxidation
Oxidation of Secondary Alcohol to Ketone
E2 Elimination (Dehydrohalogenation)
Claisen Condensation (Ethyl Acetate)
Aldol Condensation of Acetaldehyde
Kolbe Electrolysis
Baeyer-Villiger Oxidation
Beckmann Rearrangement (Cyclohexanone Oxime)
Dehydration of Ethanol
Frequently Asked Questions
What is the equation for Williamson Ether Synthesis?
The balanced equation is: C₂H₅ONa + CH₃I → C₂H₅OCH₃ + NaI.
What type of reaction is Williamson Ether Synthesis?
Williamson Ether Synthesis is a organic reaction.
Is Williamson Ether Synthesis exothermic or endothermic?
Williamson Ether Synthesis is exothermic (releases energy). The enthalpy change (ΔH) is -90.0 kJ/mol.