Rotational Effect on Radiationless Transition I: Fluorescence Depolarization in Pyrimidine
Author:
Publisher
The Chemical Society of Japan
Subject
General Chemistry
Link
https://www.jstage.jst.go.jp/article/bcsj1926/63/9/63_9_2468/_pdf
Reference20 articles.
1. The Mechanism of Occurrence of Dual Fluorescence in Intermediate Case Molecules as Viewed From Rotational Effects
2. Intermediate case radiationless decay: the excited state dynamics of pyrazine
3. Rotational effects on intramolecular radiationless transitions: the story of pyrazine
4. Magnetic field effects on the fluorescence polarization of pyrimidine in a supersonic jet
5. Internal magnetic field effects on fluorescence polarization at s1 vibronic levels of pyrimidine in a supersonic jet
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1. Molecular Symmetry Group as Applied to the Spectroscopy of Molecules with Methyl Groups: Toluene, Nitromethane, and 5-Methyltropolone’s;Bulletin of the Chemical Society of Japan;2005-07
2. Rotational Effects on the Channel Three Decay in Benzene: in Support of the Preisomerization Mechanism;Bulletin of the Chemical Society of Japan;1998-10
3. High-resolution absorption, excitation, and microwave-UV double resonance spectroscopy on a molecular beam: S1 aniline;Chemical Physics;1995-10
4. Rotational Effects on Radiationless Transition IV: Hyperfine Interaction and Deuterium Isotope Effects;Bulletin of the Chemical Society of Japan;1995-08
5. Rotational effect on radiationless transition. II. Typical intermediate case, pyrazine;Chemical Physics;1994-02
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