| Literature DB >> 23209495 |
Florian Boeck1, Max Blazejak, Markus R Anneser, Lukas Hintermann.
Abstract
(E)-Alkyl ortho-hydroxycinnamates cyclize to coumarins at elevated temperatures of 140-250 °C. We find that the use of tri-n-butylphosphane (20 mol %) as a nucleophilic organocatalyst in MeOH solution allows cyclization to take place under much milder conditions (60-70 °C). Several coumarins were prepared, starting from ortho-hydroxyarylaldehydes, by Wittig reaction with Ph(3)P=CHCO(2)Me to (E)-methyl ortho-hydroxycinnamates, followed by the phosphane catalyzed cyclization.Entities:
Keywords: catalysis; coumarins; heterocycles; mechanisms; organocatalysis; phosphanes
Year: 2012 PMID: 23209495 PMCID: PMC3510995 DOI: 10.3762/bjoc.8.186
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1Conditions for the cyclization of 2’-hydroxycinnamate and related precursors to coumarins. (a) Thermal cyclization [16]. (b) Photochemical isomerization/cyclization [17]. (c) Lewis acid induced demethylation/cyclization [18].
Scheme 2Hypothetical catalytic cycle: Nucleophile-assisted cyclization of (E)-ethyl 2’-hydroxycinnamate (1) to coumarin (2).
Screening of catalysts for nucleophilic double-bond isomerization.a
| Entry | Catalyst | Yield (%)b |
| 1 | PhSH | – |
| 2 | DABCO | – |
| 3 | cinchonine | – |
| 4 | DBU | – |
| 5 | DMAP | – |
| 6 | IMesc | <1 |
| 7 | PPh3 | – |
| 8 | 89 | |
aReactions were performed on 0.5 mmol scale in 1 mL of solvent; reaction time 20–23 h. bScreening yields were determined by GC and/or HPLC analysis with N-pivaloylaniline as internal standard. cIMes was generated in situ from IMes·HCl [37] and DBU.
Screening of solvents in catalyzed coumarin synthesis.a
| Entry | Solvent | Time (h) | Yield (%)b |
| 1 | toluene | 28 | 26 |
| 2 | isopropanol | 28 | 19 |
| 4 | EtCN | 28 | 8 |
| 5 | dioxane | 28 | 2 |
| 5 | hexane | 20 | 7 |
| 6 | CHCl3 | 28 | 21 |
| 7 | MeOH | 22 | 77 |
| 8 | MeOH | 22 | 47c |
| 9 | glycol | 22 | 3 |
| 10 | glycerol | 16 | 27 |
| 11 | MeOH/H2O (1:1) | 16 | 30 |
| 12 | CF3CH2OH | 16 | 43 |
| 13 | MeCN | 16 | 6 |
| 14 | DMSO | 16 | – |
| 15 | 23 | 36 | |
aReactions were performed on a 0.5 mmol scale in 1 mL of solvent. bScreening yields were determined by GC and/or HPLC analysis with N-pivaloylaniline as the internal standard. cPCy3 was used as the catalyst instead of n-Bu3P.
Substrate scope of the phosphane catalyzed coumarin synthesis.a
| Entry | Substrate | Product | Yield (%)b |
| 1 | 82 | ||
| 2 | 80 | ||
| 3 | –c | ||
| 4 | 96 | ||
| 5 | 88d | ||
| 6 | 83 | ||
| 7 | 96 | ||
| 8 | 96 | ||
| 9 | 75 | ||
| 10 | 99 | ||
aReactions were performed on a 1 mmol scale in 1 mL of methanol at 70 °C for 20 h. 15 min prior to workup, the mixture was quenched by addition of 1,2-dibromoethane (20 μL, 0.23 equiv). bYields of pure isolated material. cNo reaction to coumarin observed; starting material (60%) was reisolated. dReaction performed at 90 °C in a closed vessel.
Scheme 3Proposed catalytic cycle, based on 31P NMR spectroscopic and color evidence.