| Literature DB >> 16542017 |
Abstract
The degree of reagent and substrate control in the reaction of chiral sulfur ylides with chiral aldehydes has been investigated. Specifically, the reactions of the two enantiomers of the chiral benzyl sulfonium salt 1 with glyceraldehyde acetonide were studied in detail. Of the two new stereogenic centers created, it was found that the C1 stereochemistry was largely controlled by the reagent, whereas control at the C2 center was dependent on the aldehyde used. In one case, the trans isomer was produced via reversible formation of the intermediate betaine, whereas in the alternative case, the C2 center was under Felkin Anh/Cornforth control through non-reversible formation of the betaine. Thus, the aldehyde stereocenter influenced the degree of reversibility in betaine formation, which impacted on the stereocontrol at the C2 position.Entities:
Year: 2005 PMID: 16542017 PMCID: PMC1399452 DOI: 10.1186/1860-5397-1-4
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1
Scheme 2
Scheme 3
Scheme 4Epoxidation of (+)-Glyceraldehyde with Sulfur Ylides
| Entry | Sulfur ylide | other conditionsa | Yieldb | diastereoselectivity |
| 1 | --- | 72 % | 37:14:49 | |
| 2 | --- | 62 % | 80:16:4 | |
| 3 | (+)- | --- | 63 % | 89:5:6 |
| 4 | (+)- | LiCl | 64 % | 96:0:4 |
| 5 | (-)- | --- | 56 % | 1:21:78 |
| 6 | (-)- | LiCl | 61 % | 2:32:66 |
| 7 | (+)- | --- | 49 % | 53:33:14 |
| 8 | (-)- | --- | 52 % | 52:42:6 |
a: Reactions were carried out in CH2Cl2 at -78°C, using EtP2 Base to form the sulfur ylide;
b: Isolated yields;
c: Diastereomer ratios were determined by 1H NMR.
Scheme 5
Scheme 6
Scheme 7