| Literature DB >> 24322492 |
Márta Palkó1, Mikko M Hänninen, Reijo Sillanpää, Ferenc Fülöp.
Abstract
Ethyl 2,3-diendo-3-aminobicyclo[2.2.2]oct-5-ene-2-carboxylate ((±)-1) was resolved with O,O'-dibenzoyltartaric acid via diastereomeric salt formation. The efficient synthesis of the enantiomers of 2,3-diendo-3-aminobicyclo[2.2.2]oct-5-ene-2-carboxylic acid ((+)-7 and (-)-7), 3-endo-aminobicyclo[2.2.2]oct-5-ene-2-exo-carboxylic acid ((+)-5 and (-)-5), cis- and trans-3-aminobicyclo[2.2.2]octane-2-carboxylic acid ((+)-6, (-)-6, (+)-8 and (-)-8) was achieved via isomerization, hydrogenation and hydrolysis of the corresponding esters (-)-1 and (+)-1. The stereochemistry and relative configurations of the synthesized compounds were determined by NMR spectroscopy (based on the 3J(H,H) coupling constants) and X-ray crystallography.Entities:
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Year: 2013 PMID: 24322492 PMCID: PMC6270088 DOI: 10.3390/molecules181215080
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Resolutions of (±)-1 with chiral acids.
| Entry | Resolving agent | Yield (%) | S factor c | |
|---|---|---|---|---|
| 1 | 23 | 48 | 0.22 | |
| 2 | 30 | 45 | 0.27 | |
| 3 | L-DBTA a | 47 | 70 | 0.66 |
| 4 | L-DBTA | 45 | 84 | 0.76 |
a In the presence of 0.7 equivalent of aq. HCl; b The de of the salt was determined via the ee of ester 1 liberated from the salt; c The efficiency factor S is used to indicate how effective a resolution is: S-factor = 2 × yield × de [30].
Scheme 1Resolution of ester 1 with DBTA.
Scheme 2Synthesis of amino acid enantiomers (+)-5, (–)-6, (–)-7 and (–)-8.
Scheme 3Synthesis of ureas (+)-9 and (–)-10.
Figure 1Molecular structure of carbamate (+)-9. Thermal ellipsoids have been drawn at the 20% probability level.
Figure 2Molecular structure of carbamate (–)-10. Thermal ellipsoids have been drawn at the 20% probability level.
Crystallographic data for compounds (+)-9 and (–)-10.
| Compound | (+)-9 | (
|
|---|---|---|
| Formula | C20H26N2O3 | C20H26N2O3 |
| Mr | 342.43 | 342.43 |
| Crystal system | orthorhombic | orthorhombic |
| Space group (no.) | P212121(19) | P212121 (19) |
| a (Å) | 12.0973(2) | 8.9562(3) |
| b (Å) | 17.4189(2) | 18.4189(6) |
| c (Å) | 17.5471(2) | 22.9915(3) |
| α (°) | 90 | 90 |
| β (°) | 90 | 90 |
| γ (°) | 90 | 90 |
| V (Å) | 3697.55(9) | 3792.75(18) |
| Z | 8 | 8 |
| Dc (g cm−3) | 1.230 | 1.199 |
| T (K) | 123 | 123 |
| μ(CuKα) | 0.665 | 0.648 |
| Observed reflections | 6269 | 6726 |
| Rint | 0.0279 | 0.0213 |
| Parameters | 467 | 477 |
| Flack’s parameter | 0.05(17) | 0.0(2) |
| R1a | 0.0406 (0.0386) b | 0.0521 (0.0480)b |
| wR2c | 0.0991 (0.0969) | 0.1266 (0.1230) |
a R1 = ∑||Fo| − |Fc||/∑|Fo|; b Values in parentheses for reflections with I > 2σ(I); c wR2 = {∑[w(F2o − F2c)2]/∑[w(F2o)2]}½ and w = 1/[σ2(F2o) + (aP)2 + (bP)], where P = (2F2c + F2o)/3.