A peculiar reactivity of glycerol carbonate (GlyC) as an innovative and highly reactive alkylating agent for phenolic compounds is investigated in this article. In particular, 2-hydroxymethyl-1,4-benzodioxane (HMB), a key intermediate for the pharmaceutical industry, has been selectively synthesized by the reaction of a slight excess of GlyC with catechol in the presence of a basic catalyst (NaOCH3, Na-mordenite, MgO), without requiring a reaction solvent. Both reagents have been quantitatively converted in just one hour at 170 °C with a HMB yield, up to 88%, in the presence of a homogeneous basic catalyst (NaOCH3). Notably, the main side product, the HMB isomer, may be an interesting intermediate for the synthesis of calone analogues, which are important scaffolds used in fragrances. A detailed mechanistic study, supported by kinetics, GC-MS, and HMBC NMR characterization, is also reported. Accordingly, this paper describes a completely innovative and greener synthesis pathway to benzodioxanes.

An innovative synthesis pathway to benzodioxanes: The peculiar reactivity of glycerol carbonate and catechol / Tabanelli, T.*; Giliberti, C.; Mazzoni, R.; Cucciniello, R.; Cavani, F.. - In: GREEN CHEMISTRY. - ISSN 1463-9262. - ELETTRONICO. - 21:2(2019), pp. 329-338. [10.1039/c8gc02811g]

An innovative synthesis pathway to benzodioxanes: The peculiar reactivity of glycerol carbonate and catechol

Tabanelli, T.
;
Mazzoni, R.;Cavani, F.
2019

Abstract

A peculiar reactivity of glycerol carbonate (GlyC) as an innovative and highly reactive alkylating agent for phenolic compounds is investigated in this article. In particular, 2-hydroxymethyl-1,4-benzodioxane (HMB), a key intermediate for the pharmaceutical industry, has been selectively synthesized by the reaction of a slight excess of GlyC with catechol in the presence of a basic catalyst (NaOCH3, Na-mordenite, MgO), without requiring a reaction solvent. Both reagents have been quantitatively converted in just one hour at 170 °C with a HMB yield, up to 88%, in the presence of a homogeneous basic catalyst (NaOCH3). Notably, the main side product, the HMB isomer, may be an interesting intermediate for the synthesis of calone analogues, which are important scaffolds used in fragrances. A detailed mechanistic study, supported by kinetics, GC-MS, and HMBC NMR characterization, is also reported. Accordingly, this paper describes a completely innovative and greener synthesis pathway to benzodioxanes.
2019
An innovative synthesis pathway to benzodioxanes: The peculiar reactivity of glycerol carbonate and catechol / Tabanelli, T.*; Giliberti, C.; Mazzoni, R.; Cucciniello, R.; Cavani, F.. - In: GREEN CHEMISTRY. - ISSN 1463-9262. - ELETTRONICO. - 21:2(2019), pp. 329-338. [10.1039/c8gc02811g]
Tabanelli, T.*; Giliberti, C.; Mazzoni, R.; Cucciniello, R.; Cavani, F.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/670057
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