| Literature DB >> 35557800 |
Mzilikazi F Khumalo1, Ekemini D Akpan1, Praveen K Chinthakindi1, Edikarlos M Brasil1, Kamal K Rajbongshi1, Maya M Makatini2, Thavendran Govender1, Hendrik G Kruger1, Tricia Naicker1, Per I Arvidsson1,3.
Abstract
Herein, we report the preparation of 1,2,4-thiadiazinane 1,1-dioxides from reaction of β-aminoethane sulfonamides with dichloromethane, dibromomethane and formaldehyde as methylene donors. The β-aminoethane sulfonamides were obtained through sequential Michael addition of amines to α,β-unsaturated ethenesulfonyl fluorides followed by further DBU mediated sulfur(vi) fluoride exchange (SuFEx) reaction with amines at the S-F bond. This journal is © The Royal Society of Chemistry.Entities:
Year: 2018 PMID: 35557800 PMCID: PMC9089429 DOI: 10.1039/c8ra07627h
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 3.361
Scheme 1Formation of 1,2,4-thiadiazinane 1,1-dioxides, along with β-sultams, when aryl ethenesulfonyl fluorides are subjected to large excess of primary amines in DCM as solvent and DBU as catalyst.
Scheme 2β-Aminoethane sulfonamides may be isolated when the reaction if carried out with THF or neat amine as solvent. 10 Equiv. amine, 30 mol% DBU, 5 ml THF, overnight, room temperature; neat reaction conditions, 10 equiv. amine, 30 mol% DBU, 3–5 h, room temperature.
Scheme 3Formation of 1,2,4-thiadiazinane 1,1-dioxides under one-pot conditions in DCM or using a two-step procedure with other methylene donors for cyclization.(One pot) 10 equiv. amine, 50 mol% DBU, 5.0 ml DCM, reflux; β-aminoethane sulfonamide, 20 mol% DBU, 5 ml DCM, reflux; β-aminoethane sulfonamide, cat. acetic acid, 1.1 equiv. CH2O, 3 ml EtOH or MeOH microwave 90 °C, 200 W, 5 min; β-aminoethane sulfonamide, 20 mol% DBU, 5 ml DBM, reflux. Note for b–d, the yield refers to the final step.