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Taylor and Francis Group, Molecular Physics, 5-7(105), p. 907-916

DOI: 10.1080/00268970600976055

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The photoionization dynamics of the three structural isomers of dichloroethene

Journal article published in 2007 by M. A. Parkes ORCID, S. Ali, C. R. Howle, R. P. Tuckett, A. E. R. Malins
This paper is available in a repository.
This paper is available in a repository.

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Abstract

Using tunable vacuum-UV radiation from a synchrotron, the threshold photoelectron spectrum, threshold photoelectron photoion coincidence spectrum and ion breakdown diagram of the 1,1, cis-1,2 and trans-1,2 isomers of C2H2Cl2 have been recorded in the range 9–23 eV. The energies of the peaks in the threshold photoelectron spectrum are in good agreement with outer-valence Greens function calculations. The major difference between the isomers, both predicted and observed experimentally is that the and states of are approximately degenerate for 1,1 and trans-1,2, but well separated for the cis-1,2 isomer. The ground and low-lying valence states of are bound, with higher-lying states dissociating to C2H2Cl+ or . The translational kinetic energy release into C2H2Cl+ + Cl is determined as a function of energy. Isolated-state behaviour for the low-lying electronic states of becomes more statistical as the energy increases.