In this study, we explored and optimized a MW-enhanced divergent approach for the synthesis of 2-substituted benzofurans and chromenes, starting from seventeen substituted o-propargylphenols characterized by a monoaryl substitution on the propargylic sp3 carbon. Firstly, we developed a robust platform for the preparation of a library of o-propargylphenols. Under basic conditions, o-propargylphenols reacted regioselectively to yield benzofurans in yields ranging from 43% to 100%. Conversely, under cationic gold catalysis, we were able to obtain the corresponding 4H-chromenes, albeit in more variable yields (from 25% to 93%) and slightly lower regioselectively. We also propose plausible mechanisms to explain the divergent outcomes observed. Our findings underscore the potential of diversity-oriented synthesis in the investigation of molecular complexity. Our neglected o-propargylphenols have proven to be versatile and strategic starting materials for accessing oxygen-containing heterocyclic scaffolds through intramolecular cyclization reactions.
Investigating Chemical Diversity: o-Propargylphenols as Key Compounds in the Divergent Synthesis of 2-Substituted Benzofurans and Chromenes / A. Gritti, E. Brambilla, I. Nania, F. Turba, V. Pirovano, G. Abbiati. - In: ORGANIC & BIOMOLECULAR CHEMISTRY. - ISSN 1477-0520. - 22:38(2024 Oct 02), pp. 7895-7904. [10.1039/d4ob01272k]
Investigating Chemical Diversity: o-Propargylphenols as Key Compounds in the Divergent Synthesis of 2-Substituted Benzofurans and Chromenes
A. GrittiPrimo
;E. Brambilla
Secondo
;V. PirovanoPenultimo
;G. Abbiati
Ultimo
2024
Abstract
In this study, we explored and optimized a MW-enhanced divergent approach for the synthesis of 2-substituted benzofurans and chromenes, starting from seventeen substituted o-propargylphenols characterized by a monoaryl substitution on the propargylic sp3 carbon. Firstly, we developed a robust platform for the preparation of a library of o-propargylphenols. Under basic conditions, o-propargylphenols reacted regioselectively to yield benzofurans in yields ranging from 43% to 100%. Conversely, under cationic gold catalysis, we were able to obtain the corresponding 4H-chromenes, albeit in more variable yields (from 25% to 93%) and slightly lower regioselectively. We also propose plausible mechanisms to explain the divergent outcomes observed. Our findings underscore the potential of diversity-oriented synthesis in the investigation of molecular complexity. Our neglected o-propargylphenols have proven to be versatile and strategic starting materials for accessing oxygen-containing heterocyclic scaffolds through intramolecular cyclization reactions.File | Dimensione | Formato | |
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authorreprints_2024_OBC_Propargilfenoli.pdf
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