| Literature DB >> 16934149 |
Daniel Koth1, Michael Gottschaldt, Helmar Görls, Karolin Pohle.
Abstract
BACKGROUND: There are many nucleoside metal complexes known. According to observations made, only very few of them reveal their central ion to be co-ordinated by the sugar part of their molecules. The regio- and stereosspecific exchange of the hydroxyl groups at the sugar moiety by chelating units improves its complexation ability and should give access to a new class of chiral ligands.Entities:
Year: 2006 PMID: 16934149 PMCID: PMC1592495 DOI: 10.1186/1860-5397-2-17
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1Reagents and conditions: i) MsCl, pyridine, 0°C, 15 h, 86%; ii) NaN3, DMF, 80°C, 7 d, 80%; iii) Et3N, EtOH, reflux, >95%; iv) LiN3, DMF, 130°C, 24 h, 97%; v) Pd/C, Hydrogen 5 Atm, EtOH, 95%; vi) salicylic aldehyde, EtOH, reflux.
Scheme 2Reagents and conditions: i) Cu(OAc)2, THF, 5 h RT, >90%.
Figure 1X-ray crystal structure of one of the molecules in 13 with used crystallographic numbering. H-atoms, the solvent molecule and the labels at the tert-butylgroups are omitted for clarity. Atomic displacement parameters are drawn at the 50% probability level.
Figure 2This figure shows an overlay of the two complex molecules contained in the asymmetric unit.
Selected bond lengths [Å] and angles [°] of complex 13.
| CuA-O2A | 1.892(3) | O2A-CuA-O3A | 90.33(11) |
| CuA-O3A | 1.885(3) | O2A-CuA-N1A | 92.96(13) |
| Cu-N1A | 1.935(3) | O3A-CuA-N2A | 93.63(12) |
| Cu-N2A | 1.945(30) | N1A-CuA-N2A | 92.13(13) |
The dihedral angle at the copper centre between the planes defined by CuA-N1A-O2A and CuA-N2A-O3A is 38.8°. Therefore the copper has a distorted tetrahedral coordination geometry.