Selective electronic relaxation in the supersonic expansion: Rotationally resolved intersystem crossing in 1Au glyoxal
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.440599
Reference8 articles.
1. Single rotational level excitation of CO(e 3Σ−) by atomic sulfur radiation
2. Relaxation in the 1Au state of glyoxal. II. Collisional quenching
3. Intramolecular perturbations and the quenching of luminescence in small molecules
4. Mechanism of collision-induced intersystem crossing in CO
5. Relaxation in the1Austate of glyoxal. I. Collision‐free lifetimes of single vibrational levels
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1. Hydrogen bond strengthening of cis–trans glyoxal dimers in electronic excited states: A theoretical study;Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy;2014-03
2. Slow Fluorescence from Perturbed Glyoxal (S1) Levels Observed under Collision-Free Conditions;The Journal of Physical Chemistry A;1997-01-01
3. Intersystem crossing of C2H2 (S1) induced by Ar at different orientations: a van der Waals complex study;Chemical Physics Letters;1992-02
4. Formation and lifetime of metastable complexes in collisions oftrans‐glyoxal with helium;The Journal of Chemical Physics;1989-08
5. Collisional perturbation of rovibronically selected sulfur dioxide(~A1A2) in a supersonic jet;The Journal of Physical Chemistry;1988-01
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