Selective Functionalization of Aminoheterocycles by a Pyrylium Salt
Селективная функционализация аминофтерациклов пирилиевым соляным соединением
2018-07-03
SCID: 54.1/sk28ys9n
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C–N activation for nucleophilic aromatic substitutionformation of C–O, C–N, C–S, C–SO2R bondslate-stage functionalization / derivatizationpyrylium tetrafluoroborate (Pyry-BF4)selective functionalization of aminoheterocycles
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Abstract (AI)
Abstract The functionalization of aminoheterocycles by using a pyrylium tetrafluoroborate reagent (Pyry‐BF 4 ) is presented. This reagent efficiently condenses with a great variety of heterocyclic amines and primes the C−N bond for nucleophilic aromatic substitution. More than 60 examples for the formation of C−O, C−N, C−S, or C−SO 2 R bonds are disclosed herein. In contrast to C−N activation through diazotization and polyalkylation, this method is characterized by its mild conditions and impressive functional‐group tolerance. In addition to small‐molecule derivatization, Pyry‐BF 4 allows the introduction of functional groups in a late‐stage fashion to furnish highly functionalized structures.
Key Findings
1
More than 60 examples of bond-forming reactions (C−O, C−N, C−S, C−SO2R) are demonstrated, indicating broad applicability.
2
Pyry-BF4 enables late-stage functionalization of small molecules to furnish highly functionalized structures.
3
Pyrylium tetrafluoroborate (Pyry-BF4) reagent efficiently condenses with a wide variety of heterocyclic amines to prime C−N bonds for further transformation.
4
The Pyry-BF4 activated C−N bonds undergo nucleophilic aromatic substitution to form C−O, C−N, C−S, or C−SO2R bonds.
5
The method operates under mild conditions and exhibits impressive functional-group tolerance compared to diazotization and polyalkylation approaches.
Research Object
Aminoheterocycles undergoing selective functionalization using pyrylium tetrafluoroborate (Pyry-BF4)
Research Subject
Selective installation of C–O, C–N, C–S, and C–SO2R bonds via condensation with Pyry-BF4 to activate C–N bonds for nucleophilic aromatic substitution under mild, functional-group-tolerant, late-stage conditions
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2018-07-03
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