| Literature DB >> 18794783 |
Axel G Griesbeck1, Lars-Oliver Höinck, Johann Lex, Jörg Neudörfl, Dirk Blunk, Tamer T El-Idreesy.
Abstract
A set of new bis-spirofused 1,2,4-trioxanes 4a-d was obtained from the reaction of cyclohexane-1,4-dione with allylic hydroperoxides 2a-d, bearing an additional hydroxy group in the homoallylic position, by diastereoselective photooxygenation of allylic alcohols 1a-d and subsequent BF(3)-catalyzed peroxyacetalization with the diketone. From the reaction of a monoprotected cyclohexane-1,4-dione 5 with the allylic hydroperoxide 6 derived from the singlet oxygenation of methyl hydroxytiglate, one monospiro compound was obtained, the 1,2,4-trioxane ketone 7, as well as a mixture of the diastereoisomeric syn- and anti bis-1,2,4-trioxanes 8. The structures of bis-1,2,4-trioxanes were examined theoretically by DFT methods and compared with X-ray structural data in order to evaluate the preferential trioxane ring conformational orientation.Entities:
Mesh:
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Year: 2008 PMID: 18794783 PMCID: PMC6245278 DOI: 10.3390/molecules13081743
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Scheme 1
Scheme 3
Scheme 6
Figure 1X-ray structure of anti-4a and syn-4d.
Figure 2X-ray structure of anti-8 (two chair views).
Conformational situationa of the peroxo groups in molecular structures containing a 1,2,5-trioxa-spiro[5.5]undecane substructure.
| CSD Structure Code | Sterochemical arrangement of the Peroxo group | Ref. |
|---|---|---|
| AWUDUR / AWUFAZb | Axial | |
| AWUFED / AWUFIHb | axial / equatorialc | |
| FIXBAQ | Axial | |
| JOJCOA / JOJCUGb | axial / equatorial |
aBased on the 3D structures deposited in the CSD Version 5.29 incl. Jan 2008 update. The list is based on structures in which the relative situation of the two rings is not enforced by other structural circumstances like additional bridges etc. and in which the carbon atoms of the trioxacyclohexane ring are in sp3-hybridization. bThese entries concern the same molecular formula. cThis crystal structure contains two different molecular entities, one with an (OO)ax situation the other with (OO)eq.
Symmetry and energiesa calculated for the model structures 9.
| Structure | Sym. | Eabs. (Hartree) | EZP (Hartree) | Eabs.+EZP (Hartree) | Erel. (kJ/mol) | |
|---|---|---|---|---|---|---|
| antilateral | C1 | -842.04548417 | 0.267329 | -841.77815517 | 0.00 | |
| equilateral | C1 | -842.04542546 | 0.267338 | -841.77808746 | 0.18 | |
| antilateral | Ci | -842.04603154 | 0.267327 | -841.77870454 | 0.00 | |
| equilateral | C2 | -842.04599155 | 0.267295 | -841.77869655 | 0.02 | |
| antilateral | Ci | -842.04512847 | 0.267395 | -841.77773347 | 2.55 | |
| equilateral | C2 | -842.04511732 | 0.267367 | -841.77775032 | 2.51 |
aEabs: absolute SCF energy, EZP: zero point correction energy, Erel: relative energy with respect to the energetically lowest conformer.
Figure 3Calculated structures of two distinct conformers (left: equilateral, right: antilateral) of syn-9.
Figure 4Calculated structures of anti-9(OO)ax, left: equilateral (C2), right: antilateral (Ci). Each conformer is shown from two perspectives (upper and lower part).