Vibronic analysis of fluorescence spectrum of NO2 D̃ 2B2(0,0,0) in the region of 250–550 nm
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.472117
Reference20 articles.
1. Observation of the Ã(2B2) and C̃(2A2) states of NO2 by negative ion photoelectron spectroscopy of NO−2
2. Possible rotationally resolved detection of NO2 in the C̃ 2A2 state by optical–optical double resonance spectroscopy
3. Spin-orbit-induced and symmetry-forbidden C~2A2-X~2A1 absorption of nitrogen dioxide using optical-optical double-resonance spectroscopy in the 588-591-nm range
4. Rotational quantum number and vibronic symmetry of nitrogen dioxide excited with visible light in the region of 563-566 nm: optical-optical double resonance measurement and spin-orbit interaction between 2B2 and 2A2 vibronic states
5. Fluorescence of NO2 in the 2 2B2 state and its application to the optical–optical double resonance (OODR) study of the complex visible spectrum
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1. Hyperfine-resolved high-resolution laser spectroscopy of 14NO2 radical in the 15885 cm−1 energy region;Journal of Molecular Structure;2020-10
2. Ab Initio-Based Global Double Many-Body Expansion Potential Energy Surface for the First 2A″ Electronic State of NO2;The Journal of Physical Chemistry A;2012-03-09
3. DFT calculations with the symmetrized kohn–sham formalism for the electronic structure of the high-energy states of nitrogen dioxide;Theoretical and Experimental Chemistry;2010-12
4. Photochemical Water Decomposition in the Troposphere: DFT Study with a Symmetrized Kohn–Sham Formalism;ChemPhysChem;2010-11-15
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