Rotational spectra of bicyclic decanes: The trans conformation of (-)-lupinine

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Autorschaft

  • Michaela K. Jahn
  • David Dewald
  • Montserrat Vallejo-López
  • Emilio J. Cocinero
  • Alberto Lesarri
  • Jens Uwe Grabow

Externe Organisationen

  • Universidad de Valladolid
  • Universidad del País Vasco (UPV)
Forschungs-netzwerk anzeigen

Details

OriginalspracheEnglisch
Seiten (von - bis)13673-13679
Seitenumfang7
FachzeitschriftJournal of Physical Chemistry A
Jahrgang117
Ausgabenummer50
PublikationsstatusVeröffentlicht - 19 Dez. 2013

Abstract

The conformational and structural properties of the bicyclic quinolizidine alkaloid (-)-lupinine have been investigated in a supersonic jet expansion using microwave spectroscopy. The rotational spectrum is consistent with a single dominant trans conformation within a double-chair skeleton, which is stabilized by more than 10.4 kJ mol-1 with respect to other conformations. In the isolated conditions of the jet, the hydroxy methyl side chain of the molecule locks in to form an intramolecular O-HN hydrogen bond to the electron lone pair at the nitrogen atom. Accurate rotational constants, centrifugal distortion corrections, and 14N nuclear quadrupole coupling parameters are reported and compared to ab initio (MP2) and DFT (M06-2X) calculations. The stability of lupinine is further compared computationally with epilupinine and decaline in order to gauge the influence of intramolecular hydrogen bonding, absent in these molecules.

ASJC Scopus Sachgebiete

Zitieren

Rotational spectra of bicyclic decanes: The trans conformation of (-)-lupinine. / Jahn, Michaela K.; Dewald, David; Vallejo-López, Montserrat et al.
in: Journal of Physical Chemistry A, Jahrgang 117, Nr. 50, 19.12.2013, S. 13673-13679.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Jahn, MK, Dewald, D, Vallejo-López, M, Cocinero, EJ, Lesarri, A & Grabow, JU 2013, 'Rotational spectra of bicyclic decanes: The trans conformation of (-)-lupinine', Journal of Physical Chemistry A, Jg. 117, Nr. 50, S. 13673-13679. https://doi.org/10.1021/jp407671m
Jahn, M. K., Dewald, D., Vallejo-López, M., Cocinero, E. J., Lesarri, A., & Grabow, J. U. (2013). Rotational spectra of bicyclic decanes: The trans conformation of (-)-lupinine. Journal of Physical Chemistry A, 117(50), 13673-13679. https://doi.org/10.1021/jp407671m
Jahn MK, Dewald D, Vallejo-López M, Cocinero EJ, Lesarri A, Grabow JU. Rotational spectra of bicyclic decanes: The trans conformation of (-)-lupinine. Journal of Physical Chemistry A. 2013 Dez 19;117(50):13673-13679. doi: 10.1021/jp407671m
Jahn, Michaela K. ; Dewald, David ; Vallejo-López, Montserrat et al. / Rotational spectra of bicyclic decanes : The trans conformation of (-)-lupinine. in: Journal of Physical Chemistry A. 2013 ; Jahrgang 117, Nr. 50. S. 13673-13679.
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abstract = "The conformational and structural properties of the bicyclic quinolizidine alkaloid (-)-lupinine have been investigated in a supersonic jet expansion using microwave spectroscopy. The rotational spectrum is consistent with a single dominant trans conformation within a double-chair skeleton, which is stabilized by more than 10.4 kJ mol-1 with respect to other conformations. In the isolated conditions of the jet, the hydroxy methyl side chain of the molecule locks in to form an intramolecular O-HN hydrogen bond to the electron lone pair at the nitrogen atom. Accurate rotational constants, centrifugal distortion corrections, and 14N nuclear quadrupole coupling parameters are reported and compared to ab initio (MP2) and DFT (M06-2X) calculations. The stability of lupinine is further compared computationally with epilupinine and decaline in order to gauge the influence of intramolecular hydrogen bonding, absent in these molecules.",
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T2 - The trans conformation of (-)-lupinine

AU - Jahn, Michaela K.

AU - Dewald, David

AU - Vallejo-López, Montserrat

AU - Cocinero, Emilio J.

AU - Lesarri, Alberto

AU - Grabow, Jens Uwe

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AB - The conformational and structural properties of the bicyclic quinolizidine alkaloid (-)-lupinine have been investigated in a supersonic jet expansion using microwave spectroscopy. The rotational spectrum is consistent with a single dominant trans conformation within a double-chair skeleton, which is stabilized by more than 10.4 kJ mol-1 with respect to other conformations. In the isolated conditions of the jet, the hydroxy methyl side chain of the molecule locks in to form an intramolecular O-HN hydrogen bond to the electron lone pair at the nitrogen atom. Accurate rotational constants, centrifugal distortion corrections, and 14N nuclear quadrupole coupling parameters are reported and compared to ab initio (MP2) and DFT (M06-2X) calculations. The stability of lupinine is further compared computationally with epilupinine and decaline in order to gauge the influence of intramolecular hydrogen bonding, absent in these molecules.

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