Pseudorotational Landscape of Seven-Membered Rings: The Most Stable Chair and Twist-Boat Conformers of [epsi]-Caprolactone

The conformational landscape and ring-puckering properties of [epsi]-caprolactone have been analyzed by using microwave spectroscopy and quantum chemical calculations. Two conformers were detected in a supersonic jet expansion, the most stable form being a chair containing the ester group in its rec...

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Veröffentlicht in:Chemistry : a European journal 2014-10, Vol.20 (43), p.14084
Hauptverfasser: Jahn, Michaela K, Dewald, David A, Vallejo-Lopez, Montserrat, Cocinero, Emilio J, Lesarri, Alberto, Zou, Wenli, Cremer, Dieter, Grabow, Jens-Uwe
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Sprache:eng
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Zusammenfassung:The conformational landscape and ring-puckering properties of [epsi]-caprolactone have been analyzed by using microwave spectroscopy and quantum chemical calculations. Two conformers were detected in a supersonic jet expansion, the most stable form being a chair containing the ester group in its rectangular flap. This conformation benefits from reduced CH2 bond eclipsing and angle strain, while π-electron delocalization in the ester group is increased. The derived effective structure of the chair form satisfactorily agrees with the calculated near-equilibrium structure. A twist-boat conformer was also identified (9.4kJmol-1 higher in energy at CCSD(T)/aug-cc-pVTZ level), and was located in the boat-twist-boat pseudorotation cycle of the seven-membered ring. Three other low-energy conformers were investigated and characterized in terms of the four puckering coordinates of the seven-membered ring. Potential interconversions in the four-dimensional conformation space are also discussed.
ISSN:0947-6539
1521-3765
DOI:10.1002/chem.201403379