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Science 10 March 2006:
Vol. 311. no. 5766, pp. 1443 - 1446
DOI: 10.1126/science.1123397

Reports

Signatures of H2CO Photodissociation from Two Electronic States

H. M. Yin,1 S. H. Kable,1* X. Zhang,2 J. M. Bowman2*

Even in small molecules, the influence of electronic state on rotational and vibrational product energies is not well understood. Here, we use experiments and theory to address this issue in photodissociation of formaldehyde, H2CO, to the radical products H + HCO. These products result from dissociation from the singlet ground electronic state or the first excited triplet state (T1) of H2CO. Fluorescence spectra reveal a sudden decrease in the HCO rotational energy with increasing photolysis energy accompanied by substantial HCO vibrational excitation. Calculations of the rotational distribution using an ab initio potential energy surface for the T1 state are in very good agreement with experiment and strongly support dominance of the T1 state in the dynamics at the higher photolysis energies.

1 School of Chemistry, University of Sydney, Sydney, NSW 2006, Australia.
2 Department of Chemistry and Cherry L. Emerson Center for Scientific Computation, Emory University, Atlanta, GA 30322, USA.

* To whom correspondence should be addressed. E-mail: s.kable{at}chem.usyd.edu.au (S.H.K.), jmbowma{at}emory.edu (J.M.B.)

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Science. ISSN 0036-8075 (print), 1095-9203 (online)