Issue 13, 2003

Velocity-map ion-imaging of the NO fragment from the UV-photodissociation of nitrosobenzene

Abstract

The velocity and angular distribution of NO fragments produced by UV photodissociation of nitrosobenzene have been determined by velocity-map ion-imaging. Excitation of the S2-state by irradiation into the peak of the first UV absorption band at 290.5 nm leads to a completely isotropic velocity distribution with Gaussian shape. The average kinetic energy in both fragments correlates with the rotational energy of the NO fragment and increases from 6% of the excess energy for j = 6.5 to 11% for j = 29.5. A similar isotropic distribution albeit with larger average velocity is observed when the ionization laser at 226 nm is also used for photodissociation, corresponding to excitation into a higher electronic state Sn (n ≥ 3) of nitrosobenzene. It is concluded that photodissociation occurs on a timescale much slower than rotation of the parent molecule, and after redistribution of the excess energy into the vibrational degrees of freedom.

Article information

Article type
Paper
Submitted
27 Feb 2003
Accepted
02 May 2003
First published
27 May 2003

Phys. Chem. Chem. Phys., 2003,5, 2799-2806

Velocity-map ion-imaging of the NO fragment from the UV-photodissociation of nitrosobenzene

T. J. Obernhuber, U. Kensy and B. Dick, Phys. Chem. Chem. Phys., 2003, 5, 2799 DOI: 10.1039/B302319B

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