化学
氧代碳
碳阳离子
自由基离子
碎片(计算)
电化学
乙醚裂解
反应机理
光化学
乙醚
组合化学
离子
有机化学
亲核细胞
催化作用
电极
物理化学
操作系统
计算机科学
作者
Hussain A. Maashi,Toby Lewis‐Atwell,James Harnedy,Matthew N. Grayson,Louis C. Morrill
标识
DOI:10.1002/chem.202403413
摘要
Herein, we report a mechanistic investigation of a recently developed electrochemical method for the deconstructive methoxylation of arylalcohols. A combination of synthetic, electroanalytical, and computational experiments have been performed to gain a deeper understanding of the reaction mechanism and the structural requirements for fragmentation to occur. It was found that 2‐arylalcohols undergo anodic oxidation to form the corresponding aromatic radical cations, which fragment to form oxocarbenium ions and benzylic radical intermediates via mesolytic cleavage, with further anodic oxidation and trapping of the benzylic carbocation with methanol to generate the observed methyl ether products. It was also found that the electrochemical fragmentation of 2‐arylalkanols is promoted by structural features that stabilize the oxocarbenium ions and/or benzylic radical intermediates formed upon mesolytic cleavage of the aromatic radical cations. With an enhanced understanding of the reaction mechanism and the structural features that promote fragmentation, it is anticipated that alternative electrosynthetic transformations will be developed that utilize this powerful, yet underdeveloped, mode of substrate activation.
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