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DOI: 10.1055/s-2003-38727
New Observations in Organozinc Chemistry: Control of Relative Stereochemistry in Reactions of Silicon Substituted Alkenylzinc Reagents
Publication History
Publication Date:
17 April 2003 (online)
Abstract
Reagents have been synthesised that behave as both Lewis acids and nucleophiles. Reaction of these reagents with electrophiles has led to the finding that diastereoselectivity is observed upon addition to aldehydes. An ordered transition state to account for the observed stereochemistry is proposed herein.
Key words
organozinc - organosilicon - diastereocontrol - silicon rearrangement - diastereoselectivity
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1a
Parsons PJ.Eshelby JJ.Crowley PJ. Synlett 1993, 277 -
1b
Parsons PJ.Eshelby JJ.Crowley PJ. Synlett 1993, 279 -
3a
Cram DJ.Abd Elhafez FA. J. Am. Chem. Soc. 1952, 74: 5828 -
3b
Cram DJ.Abd Elhafez FA. J. Am. Chem. Soc. 1959, 81: 2748 - 4
Luche JL.Gemal AL. J. Am. Chem. Soc. 1981, 103: 5454 - 5
Ganem B.Dong Y.Zheng YF.Prestwich GD. J. Org. Chem. 1999, 64: 5441 - 6
Furuya N.Sukawa T. J. Organomet. Chem. 1975, 75: C1 - 7
Fleming I.Pulido FJ. J. Chem. Soc., Chem. Commun. 1986, 13: 1010
References
Typical Procedure
for the Rearrangement: The organozinc reagent 1 was canulated
into a solution of 2-(methoxymethoxy)-pentanal 2 (0.734 g, 5.02
mmol, 1 equiv) in Et2O (10 mL) over 15 min at -20 °C.
The mixture was then allowed to warm to r.t. and stirred a further
10 h, before aq HCl (10 mL, 1 M) was added. The resulting phases
were separated, and the aqueous layer extracted with Et2O
(3 ¥ 5 mL). The combined organic layers were washed with
brine (10 mL), dried over MgSO4, filtered and concentrated
under reduced pressure. The resulting yellow oil was subjected to flash
chromatography (Et2O-petroleum ether, 10:90)
to yield 5-methoxymethoxy-2-trimethylsilanyl-oct-1-en-4-ol (4a) as a clear colourless oil (0.914 g,
80%).
1H NMR (300 MHz, CDCl3): δ = 5.67-5.70
(1 H, m, CH
2
alkene),
5.47 (1 H, d, J
gem = 3
Hz, CH
2
alkene),
4.68-4.71 (2 H, m, AB system, CH
2
O), 3.61-3.71 (1 H, m,
CHOH), 3.4 (3 H, s, CH
3
O), 2.15-2.47 (3 H, m,
CHO and CH
2
allylic), 1.19-1.7 (4
H, m, CH
2
),
0.92 (3 H, t, J = 7
Hz, CH
3
),
0.11 (9 H, s, CH
3
Si).
13C
NMR (75.432 MHz, CDCl3): δ = 149.02
(C), 127.31 (CH2),
96.79 (CH2O), 81.59 (CHO), 70.79 (CHO),
55.81 (CH3O), 40.334 (CH2 allylic), 33.06 (CH2), 18.65 (CH2), 14.18
(CH3), -1.35 (CH3Si).
IR (thin
film): 3478, 2956, 1247, 1099, 1034, 921, 834, 757 cm-1.