DOI: 10.1021/jacs.6c09867 ISSN: 0002-7863

Geminal Difunctionalizations of Aliphatic Ketones and Aldehydes Enabled by Thioacetal Activation and Deep Electroreduction

Nicholas I. Cemalovic, Andrew J. Ressler, Ruchira S. Hariharan, Samantha N. MacMillan, Song Lin

Abstract

In this work, we identify dithioacetals as synthetically accessible, redox-active, and traceless activating groups that enable the electroreductive transformation of aliphatic ketones and aldehydes. This strategy effectively converts these carbonyl compounds into dianion equivalents to undergo deoxygenative gem-difunctionalization with various electrophiles. Faradaic control was achieved over reaction chemoselectivity, allowing for the combinatorial construction of densely functionalized silanes, boronates, and germanes.

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