Abstract
Reaction of 2-hydroxy-3-butenoates with a series of carbonyl
derivatives gives substituted 6-oxo-2-hexenoates in good yields
under mild acid conditions via Claisen rearrangement of the allyl
alkenyl ether intermediate.
Key words
Claisen rearrangement - substituted hexenoates - aldehydes - β-keto esters - tandem Michael-aldol
References
1
Denmark SE.
Senanayake CBW.
J. Org.
Chem.
1993,
58:
1853
2a For
a rhodium(I)-catalysed tandem hydrosilylation-intramolecular aldol
reaction, see: Emiabata-Smith D.
McKillop A.
Mills C.
Motherwell WB.
Whitehead AJ.
Synlett
2001,
1302
2b For an intramolecular Baylis-Hillman
reaction catalysed by secondary amines, see: Black GP.
Dinon F.
Fratucello S.
Murphy PJ.
Nielsen M.
Williams HL.
Tetrahedron
Lett.
1997,
38:
8561
2c
Richards EL.
Murphy PJ.
Dinon F.
Fratucello S.
Brown PM.
Gelbrich T.
Hursthouse MB.
Tetrahedron
2001,
57:
7771
3a
Johnston D.
McCusker CM.
Procter DJ.
Tetrahedron Lett.
1999,
40:
4913
3b
Johnston D.
McCusker CF.
Muir K.
Procter DJ.
J. Chem. Soc., Perkin
Trans. 1
2000,
681
4
House HO.
Cronin TH.
J. Org. Chem.
1965,
30:
1061
5a For
a review on the Claisen rearrangement, see: Rhoads SJ.
Raulins NR.
Organic
Reactions
Wiley;
New York:
1974.
p.22
5b
Wipf P. In Comprehensive
Organic Synthesis
Vol. 5:
Trost BM.
Pergamon Press;
Oxford:
1991.
p.827
5c
Abraham L.
Hiersemann M.
Eur. J. Org. Chem.
2002,
1461
6
Brannock KC.
J.
Am. Chem. Soc.
1959,
81:
3379
7
Magnus PD.
Nobbs MS.
Synth. Commun.
1980,
10:
273
8
Stach H.
Huggenberg W.
Hesse M.
Helv.
Chim. Acta
1987,
70:
369
9
Typical Experimental
Procedure : The 2-hydroxy-3-butenoate (20 mmol) and aldehyde
(30 mmol) were dissolved in dry toluene (15 mL) at r.t. in the presence
of a catalytic amount of p -toluenesulfonic
acid (10 mg). The reaction was refluxed for 48 h using a Dean-Stark
trap for the removal of water. The reaction mixture was concentrated under
reduced pressure and the resulting oil was purified by flash chromatography [typically
petroleum ether (bp 30-40 °C)-EtOAc,
80:20] to give the desired product. All new compounds exhibited
spectral (1 H NMR, 13 C
NMR, IR, MS) and analytical (HRMS) data fully consistent with the assigned
structures.
Spectral Data for Methyl
(
E
)-5,5-dimethyl-6-oxo-2-hexenoate: Rf 0.20 [Petroleum
ether (bp 30-40 °C)-EtOAc, 80:20]. 1 H
NMR (300 MHz, CDCl3 ): δ = 1.14 [s,
6 H, C(CH
3 )2 ],
2.41 (dd, 2 H, J = 7.8
Hz, J = 1.4
Hz, CH
2 ), 3.79 (s, 3 H, OCH
3 ), 5.93 (dt, 1 H, J = 15.6 Hz, J = 1.4 Hz, =CH CO2 CH3 ), 6.93
(dt, 1 H, J = 15.6
Hz, J = 7.8
Hz, CH =CHCO2 CH3 ),
9.60 (s, 1 H, CH O). 13 C
NMR (75.5 MHz, CDCl3 ): δ = 21.8 [C(C H3 )2 ],
39.7 (C H2 ), 46.2 [C (CH3 )2 ], 51.9
(OC H3 ), 124.6 (=C HCO2 CH3 ), 144.2 (C H=CHCO2 CH3 ),
166.8 (C O2 CH3 ),
205.0 (C HO). FT-IR (NaCl): ν = 1803,
1730, 1645 cm-1 . LRMS (EI+ ): m/z = 171 (50) [M+ + 1],
139 (100), 109 (79), 81 (73), 41 (33). HRMS (EI+ )
calcd for C9 H14 O3 [M+ ] 170.09429.
Found: 170.09400.
10
Sattar A.
Ahmad R.
Khan SA.
Pak.
J. Sci. Res.
1980,
23:
177
11
Sharma GVM.
Ilangovan A.
Sreenivas P.
Mahalingam AK.
Synlett
2000,
615