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Symmetry-breaking in the H2@C60 endofullerene revealed by inelastic neutron scattering at low temperature

Symmetry-breaking in the H2@C60 endofullerene revealed by inelastic neutron scattering at low temperature
Symmetry-breaking in the H2@C60 endofullerene revealed by inelastic neutron scattering at low temperature
The fine structure of the rotational ground state of molecular ortho-hydrogen confined inside the fullerene cage C60 is investigated by inelastic neutron scattering (INS). The INS line corresponding to transitions between the three sub-levels comprising the ortho ground state to the non-degenerate para ground state was studied as a function of temperature down to 60 mK in neutron energy gain. The experiments show that at ambient pressure the three ortho sub-levels are split into a low energy non-degenerate level and a high energy doubly degenerate level separated by 0.135 ± 0.010 meV. This observation is consistent with hydrogen molecules being located at sites with axial symmetry superseding the icosahedral symmetry of isolated rigid C60 cages in the solid phase. To gain insight into the role of inter-cage interactions in determining the symmetry breaking potential, the effects of hydrostatic pressure on the fine structure of the line was also investigated. The analysis of the INS spectra shows that the potential and the energy levels of H2 are sensitive to the orientation of neighbouring cages, consistent with the low-temperature crystalline phase of C60.
1463-9076
1998-2005
Mamone, Salvatore
b4a7783d-af9c-482a-afde-a77a06460b4b
Johnson, Mark R.
c06fdb56-9ef8-47d8-89d5-48f0ff83990f
Ollivier, Jacques
bd54919c-70db-4ffd-b1eb-b7f78f7bf036
Rols, Stéphane
604c9299-aeff-4d5e-a16c-54a2f9b50108
Levitt, Malcolm H.
bcc5a80a-e5c5-4e0e-9a9a-249d036747c3
Horsewill, Anthony J.
262eff25-a868-4984-83a6-f2a5090e7635
Mamone, Salvatore
b4a7783d-af9c-482a-afde-a77a06460b4b
Johnson, Mark R.
c06fdb56-9ef8-47d8-89d5-48f0ff83990f
Ollivier, Jacques
bd54919c-70db-4ffd-b1eb-b7f78f7bf036
Rols, Stéphane
604c9299-aeff-4d5e-a16c-54a2f9b50108
Levitt, Malcolm H.
bcc5a80a-e5c5-4e0e-9a9a-249d036747c3
Horsewill, Anthony J.
262eff25-a868-4984-83a6-f2a5090e7635

Mamone, Salvatore, Johnson, Mark R., Ollivier, Jacques, Rols, Stéphane, Levitt, Malcolm H. and Horsewill, Anthony J. (2016) Symmetry-breaking in the H2@C60 endofullerene revealed by inelastic neutron scattering at low temperature. Physical Chemistry Chemical Physics, 18 (3), 1998-2005. (doi:10.1039/c5cp07146a).

Record type: Article

Abstract

The fine structure of the rotational ground state of molecular ortho-hydrogen confined inside the fullerene cage C60 is investigated by inelastic neutron scattering (INS). The INS line corresponding to transitions between the three sub-levels comprising the ortho ground state to the non-degenerate para ground state was studied as a function of temperature down to 60 mK in neutron energy gain. The experiments show that at ambient pressure the three ortho sub-levels are split into a low energy non-degenerate level and a high energy doubly degenerate level separated by 0.135 ± 0.010 meV. This observation is consistent with hydrogen molecules being located at sites with axial symmetry superseding the icosahedral symmetry of isolated rigid C60 cages in the solid phase. To gain insight into the role of inter-cage interactions in determining the symmetry breaking potential, the effects of hydrostatic pressure on the fine structure of the line was also investigated. The analysis of the INS spectra shows that the potential and the energy levels of H2 are sensitive to the orientation of neighbouring cages, consistent with the low-temperature crystalline phase of C60.

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Accepted/In Press date: 11 December 2015
e-pub ahead of print date: 11 December 2015
Published date: 21 January 2016
Organisations: Magnetic Resonance

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Local EPrints ID: 392925
URI: http://eprints.soton.ac.uk/id/eprint/392925
ISSN: 1463-9076
PURE UUID: a0615f59-1323-4126-ac6d-aca81df56840
ORCID for Malcolm H. Levitt: ORCID iD orcid.org/0000-0001-9878-1180

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Date deposited: 19 Apr 2016 10:36
Last modified: 15 Mar 2024 03:08

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Contributors

Author: Salvatore Mamone
Author: Mark R. Johnson
Author: Jacques Ollivier
Author: Stéphane Rols
Author: Anthony J. Horsewill

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