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Making endo-cyclizations favorable again: a conceptually new synthetic approach to benzotriazoles via azide group directed lithiation/cyclization of 2-azidoaryl bromides
- Source :
- Organicbiomolecular chemistry. 17(18)
- Publication Year :
- 2019
-
Abstract
- Although benzotriazoles are important and ubiquitous, currently there is only one conceptual approach to their synthesis: bridging the two ortho-amino groups with an electrophilic nitrogen atom. Herein, we disclose a new practical alternative – the endo-cyclization of 2-azidoaryl lithiums obtained in situ from 2-azido-aryl bromides. The scope of the reaction is illustrated using twenty-four examples with a variety of alkyl, alkoxy, perfluoroalkyl, and halogen substituents. We found that the directing effect of the azide group allows selective metal–halogen exchange in aryl azides containing several bromine atoms. Furthermore, (2-bromophenyl)diazomethane undergoes similar cyclization to give an indazole. Thus, cyclizations of aryl lithiums containing an ortho–X = Y = Z group emerge as a new general approach for the synthesis of aromatic heterocycles. DFT computations suggested that the observed endo-selectivity applies to the anionic cyclizations of other functionalities that undergo “1,1-additions” (i.e., azides, diazo compounds, and isonitriles). In contrast, cyclizations with the heteroatomic functionalities that follow the “1,2-addition” pattern (cyanates, thiocyanates, isocyanates, isothiocyanates, and nitriles) prefer the exo-cyclization path. Hence, such reactions expand the current understanding of stereoelectronic factors in anionic cyclizations.
- Subjects :
- chemistry.chemical_classification
Indazole
010405 organic chemistry
Chemistry
Diazomethane
Aryl
Organic Chemistry
010402 general chemistry
01 natural sciences
Biochemistry
Combinatorial chemistry
0104 chemical sciences
chemistry.chemical_compound
Electrophile
Alkoxy group
Diazo
Azide
Physical and Theoretical Chemistry
Alkyl
Subjects
Details
- ISSN :
- 14770539
- Volume :
- 17
- Issue :
- 18
- Database :
- OpenAIRE
- Journal :
- Organicbiomolecular chemistry
- Accession number :
- edsair.doi.dedup.....ac75fc4e591d02dc52aff815dee17cd6