Precise determination of the molecular geometry in fullerenepowder: A study of the structure factor by neutron scattering in a large momentum-transfer range
- 15 July 1993
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 48 (4) , 2748-2758
- https://doi.org/10.1103/physrevb.48.2748
Abstract
The molecular structure of fullerene has been determined with high precision using neutron scattering over a large range of momentum-transfer values. In the high-temperature plastic phase, at 295 K, the description of the complete structure factor in the 0–20-A range, including Bragg and diffuse intensities, confirms the free reorientation of the spherical molecules. This analysis gives the carbon-carbon bond length within the five-member ring (single bond) equal to 1.4527(7) Å, and that connecting five-member rings (double bond) equal to 1.3909(10) Å. As the temperature is lowered to 4 K, the structural parameters are extracted from the analysis of the intramolecular contributions to the diffuse intensity in the 6.5–20-A range: the single bond is elongated [1.460(2) Å] and the double bond shortened [1.381(3) Å], indicating that electrons get more localized on the π orbitals. The calculation method allows us to consider small distortions from the ideal truncated icosahedral model (oblate or prolate deformations); the method could easily be extended to the study of substituted fullerene molecules.
Keywords
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