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Carbon-13 Shift Tensors in Polycyclic Aromatic Compounds. 8.1 A Low-Temperature NMR Study of Coronene and Corannulene

Publication ,  Journal Article
Orendt, AM; Facelli, JC; Bai, S; Rai, A; Gossett, M; Scott, LT; Boerio-Goates, J; Pugmire, RJ; Grant, DM
Published in: Journal of Physical Chemistry A
January 13, 2000

The principal values of the 13C chemical shift tensors were measured for coronene and corannulene, both at room temperature and at approximately 100 K. At room temperature the molecules are moving, resulting in a motionally averaged powder pattern. A comparison of the principal values between the room temperature motionally averaged pattern and the low-temperature static pattern provides experimental information about the orientation of the principal axis system of the shift tensor for the bridgehead carbons in these molecules. For corannulene, the orientation of δ33 component was determined to lie at an angle of 13° from the rotation axis (the 5-fold symmetry axis of the molecule) for the inner bridgehead carbons and at an angle 26° from this same rotation axis for the outer bridgehead carbons. These orientations are in good agreement with the angles necessary to place the δ33 component along the p orbitals involved in π-bonding at these carbons. In the case of coronene, the differences between the principal values at the two temperatures indicate there is an angle of 14° between the axis of rotation and the δ33 component for both the inner and outer bridgehead carbons. This indicates that the motion is not constrained to simple in-plane rotation, but must also have an out-of-plane component. Quantum chemical calculations of the shielding tensors were also completed using both experimental and optimized molecular geometries. The results of the calculations are in good agreement with the experimental findings.

Duke Scholars

Published In

Journal of Physical Chemistry A

DOI

ISSN

1089-5639

Publication Date

January 13, 2000

Volume

104

Issue

1

Start / End Page

149 / 155

Related Subject Headings

  • 5102 Atomic, molecular and optical physics
  • 3407 Theoretical and computational chemistry
  • 3406 Physical chemistry
  • 0307 Theoretical and Computational Chemistry
  • 0306 Physical Chemistry (incl. Structural)
  • 0202 Atomic, Molecular, Nuclear, Particle and Plasma Physics
 

Citation

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Orendt, A. M., Facelli, J. C., Bai, S., Rai, A., Gossett, M., Scott, L. T., … Grant, D. M. (2000). Carbon-13 Shift Tensors in Polycyclic Aromatic Compounds. 8.1 A Low-Temperature NMR Study of Coronene and Corannulene. Journal of Physical Chemistry A, 104(1), 149–155. https://doi.org/10.1021/jp993057k
Orendt, A. M., J. C. Facelli, S. Bai, A. Rai, M. Gossett, L. T. Scott, J. Boerio-Goates, R. J. Pugmire, and D. M. Grant. “Carbon-13 Shift Tensors in Polycyclic Aromatic Compounds. 8.1 A Low-Temperature NMR Study of Coronene and Corannulene.” Journal of Physical Chemistry A 104, no. 1 (January 13, 2000): 149–55. https://doi.org/10.1021/jp993057k.
Orendt AM, Facelli JC, Bai S, Rai A, Gossett M, Scott LT, et al. Carbon-13 Shift Tensors in Polycyclic Aromatic Compounds. 8.1 A Low-Temperature NMR Study of Coronene and Corannulene. Journal of Physical Chemistry A. 2000 Jan 13;104(1):149–55.
Orendt, A. M., et al. “Carbon-13 Shift Tensors in Polycyclic Aromatic Compounds. 8.1 A Low-Temperature NMR Study of Coronene and Corannulene.” Journal of Physical Chemistry A, vol. 104, no. 1, Jan. 2000, pp. 149–55. Scopus, doi:10.1021/jp993057k.
Orendt AM, Facelli JC, Bai S, Rai A, Gossett M, Scott LT, Boerio-Goates J, Pugmire RJ, Grant DM. Carbon-13 Shift Tensors in Polycyclic Aromatic Compounds. 8.1 A Low-Temperature NMR Study of Coronene and Corannulene. Journal of Physical Chemistry A. 2000 Jan 13;104(1):149–155.
Journal cover image

Published In

Journal of Physical Chemistry A

DOI

ISSN

1089-5639

Publication Date

January 13, 2000

Volume

104

Issue

1

Start / End Page

149 / 155

Related Subject Headings

  • 5102 Atomic, molecular and optical physics
  • 3407 Theoretical and computational chemistry
  • 3406 Physical chemistry
  • 0307 Theoretical and Computational Chemistry
  • 0306 Physical Chemistry (incl. Structural)
  • 0202 Atomic, Molecular, Nuclear, Particle and Plasma Physics