Literature DB >> 34596395

Chemoselective Electrosynthesis Using Rapid Alternating Polarity.

Yu Kawamata1, Kyohei Hayashi1, Ethan Carlson1, Shobin Shaji2, Dirk Waldmann2,3, Bryan J Simmons4, Jacob T Edwards4, Christoph W Zapf4, Masato Saito1, Phil S Baran1.   

Abstract

Challenges in the selective manipulation of functional groups (chemoselectivity) in organic synthesis have historically been overcome either by using reagents/catalysts that tunably interact with a substrate or through modification to shield undesired sites of reactivity (protecting groups). Although electrochemistry offers precise redox control to achieve unique chemoselectivity, this approach often becomes challenging in the presence of multiple redox-active functionalities. Historically, electrosynthesis has been performed almost solely by using direct current (DC). In contrast, applying alternating current (AC) has been known to change reaction outcomes considerably on an analytical scale but has rarely been strategically exploited for use in complex preparative organic synthesis. Here we show how a square waveform employed to deliver electric current-rapid alternating polarity (rAP)-enables control over reaction outcomes in the chemoselective reduction of carbonyl compounds, one of the most widely used reaction manifolds. The reactivity observed cannot be recapitulated using DC electrolysis or chemical reagents. The synthetic value brought by this new method for controlling chemoselectivity is vividly demonstrated in the context of classical reactivity problems such as chiral auxiliary removal and cutting-edge medicinal chemistry topics such as the synthesis of PROTACs.

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Year:  2021        PMID: 34596395      PMCID: PMC8711284          DOI: 10.1021/jacs.1c06572

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   16.383


  24 in total

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  5 in total

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2.  Chemoselective (Hetero)Arene Electroreduction Enabled by Rapid Alternating Polarity.

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