The direct synthesis of sterically hindered aldehydes is highly challenging. Herein, we report a direct approach to generate such compounds electroreductive cleavage of the C(sp)-O bond of activated alcohols. Under the established reaction conditions, benzylic radical intermediates were efficiently generated. A subsequent radical-polar crossover generated carbanions that further reacted with ,-dimethylformamide to form various aldehydes with tertiary or quaternary benzylic carbon centers. The feasibility of a gram-scale synthesis was also demonstrated. This reaction is also operated in a simple undivided cell, which avoids the use of any transition metal catalysts, toxic gas, and reductants.

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http://dx.doi.org/10.1039/d3cc01529gDOI Listing

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