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dc.contributor.authorWatanabe, Kaorien_US
dc.contributor.authorOkajima, Hajimeen_US
dc.contributor.authorKato, Takuyaen_US
dc.contributor.authorHamaguchi, Hiro-oen_US
dc.date.accessioned2014-12-08T15:21:29Z-
dc.date.available2014-12-08T15:21:29Z-
dc.date.issued2012-01-07en_US
dc.identifier.issn0021-9606en_US
dc.identifier.urihttp://dx.doi.org/10.1063/1.3671998en_US
dc.identifier.urihttp://hdl.handle.net/11536/15266-
dc.description.abstractRotational dynamics of solvated carbon dioxide (CO(2)) has been studied. The infrared absorption band of the antisymmetric stretch mode in acetonitrile is found to show a non-Lorentzian band shape, suggesting a non-exponential decay of the vibrational and/or rotational correlation functions. A combined method of a molecular dynamics (MD) simulation and a quantum chemical calculation well reproduces the observed band shape. The analysis suggests that the band broadening is almost purely rotational, while the contribution from the vibrational dephasing is negligibly small. The non-exponential rotational correlation decay can be explained by a simple rotor model simulation, which can treat large angle rotations of a relatively small molecule. A polarized Raman study of the symmetric stretch mode in acetonitrile gives a rotational bandwidth consistent with that obtained from the infrared analysis. A sub-picosecond time-resolved infrared absorption anisotropy measurement of the antisymmetric stretch mode in ethanol also gives a decay rate that is consistent with the observed rotational bandwidths. (C) 2012 American Institute of Physics. [doi:10.1063/1.3671998]en_US
dc.language.isoen_USen_US
dc.subjectcarbon compoundsen_US
dc.subjectinfrared spectraen_US
dc.subjectmolecular dynamics methoden_US
dc.subjectRaman spectraen_US
dc.subjectrotational statesen_US
dc.subjectsolvent effectsen_US
dc.subjectspectral line broadeningen_US
dc.subjecttime resolved spectraen_US
dc.subjectvibrational statesen_US
dc.titleRotational dynamics of solvated carbon dioxide studied by infrared, Raman, and time-resolved infrared spectroscopies and a molecular dynamics simulationen_US
dc.typeArticleen_US
dc.identifier.doi10.1063/1.3671998en_US
dc.identifier.journalJOURNAL OF CHEMICAL PHYSICSen_US
dc.citation.volume136en_US
dc.citation.issue1en_US
dc.citation.epageen_US
dc.contributor.department應用化學系zh_TW
dc.contributor.department應用化學系分子科學碩博班zh_TW
dc.contributor.departmentDepartment of Applied Chemistryen_US
dc.contributor.departmentInstitute of Molecular scienceen_US
dc.identifier.wosnumberWOS:000298967200028-
dc.citation.woscount2-
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