| Literature DB >> 33299486 |
Danny Lainé1, Vincent Denavit1, Olivier Lessard1, Laurie Carrier1, Charles-Émile Fecteau1, Paul A Johnson1, Denis Giguère1.
Abstract
In this work, we have developed a simple synthetic approach using Et3N·3HF as an alternative to the DAST reagent. We controlled the stereochemistry of the nucleophilic fluorination at C4 of 1,6-anhydro-2,3-dideoxy-2,3-difluoro-4-O-triflate-β-ᴅ-talopyranose using Et3N·3HF or in situ generated Et3N·1HF. The influence of the fluorine atom at C2 on reactivity at C4 could contribute to a new fluorine effect in nucleophilic substitution. Finally, with the continuous objective of synthesizing novel multi-vicinal fluorosugars, we prepared one difluorinated and one trifluorinated alditol analogue.Entities:
Keywords: Et3N·3HF; deoxyfluorination; fluorine effect; polyfluorinated carbohydrates; polyfluoroalditol analogues
Year: 2020 PMID: 33299486 PMCID: PMC7705882 DOI: 10.3762/bjoc.16.237
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Previously described synthesis of 2,3,4-trifluorinated analogues of galactose 6, glucose 7, mannose 8, and talose 9 from levoglucosan 1.
Synthesis of 1,6-anhydro-2,3,4-trideoxy-2,3,4-trifluoro-β-ᴅ-hexopyranoses 10–12 using DAST.
| Entry | Starting materials | Conversion (%)a | Products (yield, %)a |
| 1 | 98 | ||
| 2 | 99 | ||
| 3 | 100 | ||
| 4 | 100 | decomposition | |
aConversions and yields were determined from the 19F NMR (470 MHz, CDCl3) using 2-fluoro-4-nitrotoluene as internal standard.
Selective synthesis of trifluorotalose analogue 12 or trifluoromannose analogue 14 using Et3N·3HF.a
| Entry | Additive (equiv) | Conversionb (%) | Yield (%)b | ||
| 1a | Et3N (50) | 100 | 21 | 44 | 20 |
| 3 | Et3N (15) | 98 | 29 | 32 | 11 |
| 4 | quinuclidine (30) | 100 | 6 | 18 | 22 |
| 5 | pyridine (30) | 92 | 29 | 6 | 4 |
| 6 | (−)-sparteine (30) | 99 | 10 | 43 | 14 |
| 7c | pyridine (120) | 46 | 1 | 0 | 2 |
aReactions were carried out in a glass seal tube with 15 equivalents of Et3N·3HF at 80 °C for 24 h. bConversions and yields were determined with the 19F NMR (470 MHz, CDCl3) using 2-fluoro-4-nitrotoluene as internal standard. cPyridine·9HF was used instead of Et3N·3HF.
Figure 2Typical 19F NMR spectrum (470 MHz, CDCl3) of the crude reaction mixture using Et3N·3HF/Et3N (entry 3 of Table 2).
Figure 3Fluorination at C4 of 1,6-anhydro-2,3-difluorohexopyranose analogues. a) Reactions on triflates 13, 16–18, dipole of C–F bonds are displayed in green arrows; b) Proposed mechanism for the formation of trifluorotalose analogue 12 and trifluoromannose analogue 14 via an oxiranium-like intermediate A from compound 13.
Scheme 1Synthesis of polyfluorinated alditols from levoglucosan 1: a) difluoroglucitol analogue 22; b) trifluorotalitol analogue 24.