化学
位阻效应
亲核细胞
电化学
碳阳离子
产量(工程)
组合化学
有机化学
催化作用
酒
材料科学
电极
物理化学
冶金
作者
Cyrille Kiaku,Simon Kaltenberger,Daniel Raydan,Valerio Morlacci,Bini Claringbold,Iain C. A. Goodall,Laura Palombi,Darren L. Poole,Kevin Lam
标识
DOI:10.1021/acs.orglett.4c04093
摘要
Traditional etherification methods, although staples in synthetic chemistry, often fall short in the efficient construction of sterically hindered dialkyl ethers, especially under mild and practical conditions. Recent advances have attempted to address these limitations, typically relying on transition metal catalysts, external reductants, or harsh reaction conditions. In this work, we disclose a novel electrochemical approach that enables the synthesis of sterically hindered ethers from economically relevant and readily accessible alcohols without the need for sacrificial oxidants. Our protocol exploits mild conditions to generate reactive carbocations, which are subsequently captured by alcohol nucleophiles to yield the desired ethers. This method is cost-effective, practical, and broad in scope, providing a valuable addition to chemists' synthetic toolkit for ether synthesis.
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