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Photodissociation dynamics and the dissociation energy of vanadium monoxide, VO, investigated using velocity map imaging†
Alexander S. Gentleman,Andreas Iskra,Hansjochen Köckert,Stuart R. Mackenzie
Physical Chemistry Chemical Physics Pub Date : 06/24/2019 00:00:00 , DOI:10.1039/C9CP02120E
Abstract

Velocity map imaging has been employed to study multi-photon fragmentation of vanadium monoxide (VO) via the C 4Σ state. The fragmentation dynamics are interpreted in terms of dissociation at the three-photon level, with the first photon weakly resonant with transitions to vibrational energy levels of the C 4Σ state. The dissociation channels accessed are shown to depend strongly on the vibrational level via which excitation takes place. Analysis of the evolution of the kinetic energy release spectrum with photon energy leads to a refined value for the dissociation energy of ground state VO of D0(VO) = 53 126 ± 263 cm−1.

Graphical abstract: Photodissociation dynamics and the dissociation energy of vanadium monoxide, VO, investigated using velocity map imaging
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