Ultrafast vibrational spectra of the aqueous oxalate ion in the region of its carboxylate asymmetric stretch modes show novel relaxation processes. Two-dimensional infrared vibrational echo spectra and the vibrational dynamics obtained from them along with measurements of the anisotropy decay provide a picture in which the localization of the oxalate vibrational excitation onto the carboxylate groups occurs in ∼450 fs. Molecular dynamics simulations are used to characterize the vibrational dynamics in terms of dihedral angle motion between the two carboxylate planes and solvation dynamics. The localization of the oxalate vibrational excitation onto the carboxylates is induced by the fluctuations in the carboxylate vibrational frequencies which are shown by theory and experiment to have a similar correlation time as the anisotropy decay.
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28 November 2011
Research Article|
November 23 2011
Two-dimensional infrared spectral signature and hydration of the oxalate dianion Available to Purchase
Daniel G. Kuroda;
Daniel G. Kuroda
Department of Chemistry,
University of Pennsylvania
, Philadelphia, Pennsylvania 19104, USA
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Robin M. Hochstrasser
Robin M. Hochstrasser
a)
Department of Chemistry,
University of Pennsylvania
, Philadelphia, Pennsylvania 19104, USA
Search for other works by this author on:
Daniel G. Kuroda
Department of Chemistry,
University of Pennsylvania
, Philadelphia, Pennsylvania 19104, USA
Robin M. Hochstrasser
a)
Department of Chemistry,
University of Pennsylvania
, Philadelphia, Pennsylvania 19104, USA
a)
Electronic mail: [email protected].
J. Chem. Phys. 135, 204502 (2011)
Article history
Received:
August 03 2011
Accepted:
October 17 2011
Citation
Daniel G. Kuroda, Robin M. Hochstrasser; Two-dimensional infrared spectral signature and hydration of the oxalate dianion. J. Chem. Phys. 28 November 2011; 135 (20): 204502. https://doi.org/10.1063/1.3658461
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