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Chemical Structure| 177734-77-9 Chemical Structure| 177734-77-9

Structure of 177734-77-9

Chemical Structure| 177734-77-9

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Product Details of [ 177734-77-9 ]

CAS No. :177734-77-9
Formula : C7H7F3O6S
M.W : 276.19
SMILES Code : O=C(C1=C(OS(=O)(C(F)(F)F)=O)COC1)OC

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Application In Synthesis of [ 177734-77-9 ]

* All experimental methods are cited from the reference, please refer to the original source for details. We do not guarantee the accuracy of the content in the reference.

  • Downstream synthetic route of [ 177734-77-9 ]

[ 177734-77-9 ] Synthesis Path-Downstream   1~2

  • 1
  • [ 57595-23-0 ]
  • [ 1025373-45-8 ]
  • [ 7087-68-5 ]
  • [ 177734-77-9 ]
YieldReaction ConditionsOperation in experiment
In dichloromethane; 3-(Trifluoromethylsulfonyloxy)-2,5-dihydrofuran-4-carboxylic acid methyl ester A solution of <strong>[57595-23-0]tetrahydrofuran-3-one-4-carboxylic acid-methyl ester</strong> (P. Dowd, S.-C. Choi, Tetrahedron 1991, 47, 4847) (2.88 g, 20 mmol) in dichloromethane (200 ml) is mixed at -78 C. with diisopropyl(ethyl)amine (3.96 ml, 23.2 mmol). After 10 minutes, trifluoromethanesulfonic acid anhydride (3.88 ml, 23.2 mmol) is slowly added in drops to it. The batch is warmed to room temperature, stirred for 2 hours and concentrated by evaporation. The residue is purified by column chromatography (SiO2) with ethyl acetate-hexane: 3.62 g (66%) of product. 1H-NMR (CDCl3): delta=3.85 (s, 3H), 4.80 (t, 2H), 4.92 (t, 2H).
  • 2
  • [ 57595-23-0 ]
  • [ 358-23-6 ]
  • [ 177734-77-9 ]
YieldReaction ConditionsOperation in experiment
Sodium hydride (4 g, 60% w/w in oil dispersion, 100 mmol) was added to a flame-dried flask along with ether (100 mL). To the reaction flask under nitrogen atmosphere, methyl glycolate (7.7 mL, 100 mmol) was added slowly with constant stirring. The reaction mixture was allowed to stir at room temperature for 2 hours under nitrogen atmosphere then solvent was removed in vacuo. To the residue, methyl acrylate (10.8 mL, 120 mmol) in DMSO (50 mL) was added in one portion while the reaction flask was kept immersed in an ice bath. The reaction mixture was allowed to stir at 0 C for 15 minutes then at room temperature for 1 hour. The reaction mixture was then filtered through Celte'3', poured into ice-cold aqueous sulfuric acid solution (150 mL, 2N), and extracted with ether (2 x 200 mL). The organic layer was washed with saturated NaCl solution (500 mL), dried over anhydrous Na2S04, filtered, and solvent was removed in vacuo. The intermediate ketoester was recovered in 26% yield (3.7 g, 25.7 mmol) afterpurificationby column chromatography on silica using 25% ethyl acetate/hexanes as the eluent (Rf= 0.3). The ketoester intermediate (3.7g, 25.7 mmol) was added slowly to a solution of sodium hydride (1.4 g, 60% w/w in oil dispersion, 34 mmol) in ether (80 mL) at 0 C with constant stirring under nitrogen atmosphere. After 30 minutes, trifluoromethanesulfonic anhydride (5.3 mL, 31.4 mmol) was added dropwise over 5 minutes. The reaction mixture was allowed to stir at 0 C for an additional 1.5 hours then the reaction was poured into water (80 mL) and the layers were separated. The aqueous phase was washed with dichloromethane (2 x 60 mL) and the organic phases were combined. The organic layer was dried over anhydrous Na2SO4, filtered, and solvent was removed in vacuo. The 2,5- dihydrofuran ester 13a was recovered in 23% yield (1.6 g, 5.8 mmol) after purification by column chromatography on silica using 25% ethyl acetate/hexanes as the eluent (Rf= 0.45). MS: calc. for C7H7F306S : 257.9 ; Found: GC-MS 7nl5 275 (MH).
To a solution of DIEA (860 mI_, 4.99 mmol) in dry DCM (20 ml_) cooled to -78C under Argon was added a solution of methyl 4-oxotetrahydrofuran-3- carboxylate (628 mg, 4.63 mmol in 20 ml_ DCM) dropwise. The reaction mixture was stirred -78C for 30 minutes post addition and then treated dropwise with neat trifluoromethanesulfonic anhydride (820 mI_, 4.98 mmol). After stirring the reaction mixture for 2 h 0C, the reaction mixture was quenched by the cautious addition of cold water (11 ml_). The reaction mixture was warmed to ambient temperature and diluted with water and diethyl ether. The aqueous layer was extracted with diethyl ether and the combined organic layers washed with sat. NaHCC>3 and brine, then dried over MgS04. The resulting residue was concentrated in vacuo followed by flash chromatography (Si02, 0-50% DCM/heptane) to yield a pale yellow oil.
 

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