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LIF excitation spectra for S0 → S1 transition of deuterated anthranilic acid COOD, ND2 in supersonic-jet expansion
Authors:Przemys?aw Kolek,Sebastian Le?niewski,Maciej Gó  ra,Adam We¸  grzynowicz
Affiliation:a Institute of Physics, Rzeszów University, 16A Rejtana, PL-35-959 Rzeszów, Poland
b Department of Physical Chemistry and Electrochemistry, Faculty of Chemistry, Jagiellonian University, 3 Ingardena, PL-30-060 Krakow, Poland
c Department of Theoretical Chemistry, Faculty of Chemistry, Jagiellonian University, 3 Ingardena, PL-30-060 Krakow, Poland
d Department of Organic Chemistry, Faculty of Chemistry, Jagiellonian University, 3 Ingardena, PL-30-060 Krakow, Poland
e Department of Physical and Theoretical Chemistry, Graz University of Technology, Technikerstrasse 4/I, A-8010 Graz, Austria
Abstract:Laser induced fluorescence (LIF) excitation spectrum for the S0 → S1 transition of anthranilic acid molecules deuterated in the substituent groups (COOD, ND2) was investigated. Analysis of the LIF spectrum allowed for the assignment of the six most prominent fundamental in-plane modes of frequencies up to ca. View the MathML source. The experimental results show good correlation with the frequency changes upon deuteration computed with CIS (CI-Singles) and TD-DFT for the S1 state. Deuteration induced red-shifts of the identified fundamental bands are used for examination of the alternative assignments proposed in earlier studies. Potential energy distributions (PED) and overlaps of the in-plane normal modes with frequencies below View the MathML source indicate that the correspondence of the respective vibrations of the deuterated and non-deuterated molecule is very good. A blue-shift of the 00 transition due to the isotopic substitution, is equal to View the MathML source. This relatively large value is caused primarily by a significant decrease of the N-H stretching frequency associated with the increase of strength of the intramolecular hydrogen bond upon the electronic excitation. The deuteration shift of the 00 band was interpreted in terms of the differences of the zero point energy (ZPE) between the S0 and S1 electronic states, computed with DFT and TD-DFT methods, respectively.
Keywords:LIF excitation spectra   Supersonic jet spectroscopy   Anthranilic acid   Isotopic substitution   ab-initio CIS   TD-DFT
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