Highly Selective Dearomative C3 Deuteration and N -Functionalization of Aza-Heterocycles toward Fsp3-Enriched Motifs

Abstract Herein, we disclose the first dearomative C3 selective deuteration and N-deuteroformylation of aza-arenes in a single step, using Hantzsch ester, D2O, and BrCF2CO2K. This methodology clearly enables the synthesis of novel deuterated Fsp3-rich aza-heterocyclic building blocks under mild reaction conditions, besides obviating the need for a catalyst, a base, and/or an acid. This transformation also exhibits a broad substrate scope (∼45 examples) and excellent functional-group tolerance, affording the desired products in excellent yields (up to 95%) along with deuterium incorporation levels of up to 98%. In addition, we present some rare examples of selective partial reductive C3 deuteration and N-deuteroformylation of pyridine derivatives, including late-stage deuteration and functionalization of complex N-heterocycles again under mild conditions. Control experiments and mechanistic studies support the idea that the reaction involves activation of the heteroarene via a zwitterionic difluoromethyl carboxylate intermediate.

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Journal
Organic Letters
Published
2026-09-28
DOI
https://doi.org/10.1021/acs.orglett.6c03573
Primary Topic
Chemical Reactions and Isotopes
Type
article
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article

Highly Selective Dearomative C3 Deuteration and N -Functionalization of Aza-Heterocycles toward Fsp3-Enriched Motifs

Kishore Natte, Naresh Kolli, Sebastian Wohlrab, Km Sadhana et al.
Organic Letters
Chemical Reactions and Isotopes
article

Highly Selective Dearomative C3 Deuteration and N -Functionalization of Aza-Heterocycles toward Fsp3-Enriched Motifs

Kishore Natte, Naresh Kolli, Sebastian Wohlrab, Km Sadhana, V. Narayana Kalevaru, Kokkiripati Yaswanth, Tarun Bhatt, Debanga Borkakoty, Kotha Middela Rahul Reddy, Nagaraju Gurajala, V Pratap Reddy Gajulapalli, Bairu Nivas
article en

Abstract

Abstract Herein, we disclose the first dearomative C3 selective deuteration and N-deuteroformylation of aza-arenes in a single step, using Hantzsch ester, D2O, and BrCF2CO2K. This methodology clearly enables the synthesis of novel deuterated Fsp3-rich aza-heterocyclic building blocks under mild reaction conditions, besides obviating the need for a catalyst, a base, and/or an acid. This transformation also exhibits a broad substrate scope (∼45 examples) and excellent functional-group tolerance, affording the desired products in excellent yields (up to 95%) along with deuterium incorporation levels of up to 98%. In addition, we present some rare examples of selective partial reductive C3 deuteration and N-deuteroformylation of pyridine derivatives, including late-stage deuteration and functionalization of complex N-heterocycles again under mild conditions. Control experiments and mechanistic studies support the idea that the reaction involves activation of the heteroarene via a zwitterionic difluoromethyl carboxylate intermediate.

Organic Letters
Leibniz Institute for Catalysis (DE), Indian Institute of Technology Hyderabad (IN)
Openalex Percentile: Top 13%
Chemical Reactions and Isotopes
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