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DOI: 10.1055/s-0029-1218352
An Efficient Protocol for the Oxidative Hydrolysis of Ketone SAMP Hydrazones Employing SeO2 and H2O2 under Buffered (pH 7) Conditions
Publication History
Publication Date:
16 November 2009 (online)
Abstract
An effective oxidative protocol for the liberation of ketones from SAMP hydrazones employing peroxyselenous acid under aqueous buffered conditions (pH 7) has been developed. The procedure proceeds without epimerization of adjacent stereocenters or dehydration, in representative SAMP alkylation and aldol reaction adducts, respectively.
Key words
SAMP - oxidative cleavage - aldol reactions - ketones - SeO2
- 1
Enders D.Eichenauer H. Angew. Chem., Int. Ed. Engl. 1976, 15: 549 - 2
Job A.Janeck CF.Bettray W.Peter R.Enders D. Tetrahedron 2002, 58: 2253 ; and references therein - 3
Enders D.Wortmann L.Peters R. Acc. Chem. Res. 2000, 33: 157 - 4
Enders D.Plant A. Synlett 1994, 1054 - 5
Said SB.Skarzewski J.Mlochowski J. Synthesis 1989, 223 - 6
Stupp SI.Son S.Li LS.Lin HC.Keser M. J. Am. Chem. Soc. 1995, 117: 5212 - 7
Eichenauer H.Friedrich E.Lutz W.Enders D. Angew. Chem., Int. Ed. Engl. 1978, 17: 206 - 11
Enders D.Bockstiegel B. Synthesis 1989, 493
References and Notes
General Procedure
for the Synthesis of Hydrazones
A mixture of SAMP
(0.04 mmol), ketone (0.04 mmol), and PTSA (0.004 mmol) was heated
at reflux in cyclohexane
(1 mL) overnight. The mixture
was then cooled to r.t., neutralized with sat. NaHCO3 (3
mL) and the aqueous layer was extracted with EtOAc (3 × 5
mL). The combined organic layers were dried over Na2SO4 and
concentrated. The residue was purified by flash chromatography to provide
the desired hydrazone (70-98%).
General Procedure
for the Synthesis of Ketones 7-15 and 22-24
To
a r.t. solution of hydrazone (0.18 mmol) and SeO2 (0.14 mmol)
in MeOH (2.3 mL) was added pH 7 phosphate buffer (0.066 mL) followed
by 30% H2O2 (0.066 mL). After completion
of the hydrolysis reaction, sat. NaHCO3 (3 mL) was added,
and the aqueous layers were extracted with pentane (3 × 3
mL). The combined organic layers were combined, dried over Na2SO4,
and concentrated. The residue was purified via flash chromatography
to provide the corresponding ketone in 68-96% yield.
General Procedure
for the Synthesis of Alkylated SAMP Hydrazones 19-21
To
a solution of the corresponding hydrazone (0.26 mmol) in THF (2
mL) at -78 ˚C was added t-BuLi
(1.6 M in pentane, 0.39 mmol). The mixture was kept at this temperature
for 2 h before cooling to -100 ˚C. (S)-(+)-1-Iodo-2-methylbutane (0.52
mmol) was then added via syringe, the solution stirred at -100 ˚C
for 0.5 h, and then at -78 ˚C for 2 h. The reaction was
quenched with sat. NH4Cl (3 mL). The aqueous layers were
extracted with Et2O (3 × 5
mL), and the combined organic layers were dried over Na2SO4,
concentrated, and the residue was purified by flash chromatography
to furnish the alkylated hydrazone in 90-96% yield.
General Procedure
for the Synthesis of SAMP Aldol Products 25-27
To
a solution of hydrazone (0.18 mmol) in THF (1.2 mL) at -78 ˚C
was added t-BuLi (1.6 M in pentane, 0.18
mmol). The mixture was maintained at this temperature for 2 h before
cooling to -100 ˚C. Benzaldehyde (0.36 mmol) was then
added via syringe, the solution stirred at -100 ˚C
for 0.5 h, and then at -78 ˚C for 2 h. The reaction
was quenched with sat. NH4Cl (3 mL), the aqueous layer
extracted with Et2O (3 × 5
mL), and the combined organic layers were dried over Na2SO4 and
concentrated. The residue was purified by flash chromatography to
furnish aldol products in 68-96% yield
General Procedure
for the Synthesis of β-Hydroxy Ketones 28-30
To
a r.t. solution of the corresponding hydrazone (0.03 mmol) and SeO2 (0.045
mmol) in MeOH (0.45 mL) was added pH 7 phosphate buffer (0.15 mL)
followed by 30% H2O2 (0.015 mL).
After completion, sat. NaHCO3 (2 mL) was added to the
mixture, and the aqueous layers were extracted with EtOAc (2 × 3
mL). The combined organic layers were dried over Na2SO4 and
concentrated. The residue was purified by flash chromatography (SiO2 deactivated
with 18% H2O) to provide β-hydroxy
ketones (65-81%).