Internal rotation of the methyl group in the S0 and S1 (3s Rydberg) electronic states of N-methylpyrrole
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Reference26 articles.
1. Reanalysis of the Nuclear Quadrupole Coupling in the Rotational Spectrum of N-Methylpyrrole
2. Microwave spectra of isotopic N-methylpyrroles, quadrupole coupling constants and substitution structure
3. Mikrowellenspektrum, Hinderungspotential der internen Rotation, Dipolmoment und Quadrupolkopplungskonstanten des N-Methylpyrrols
4. The multiphoton ionization spectrum of toluene in a supersonic free jet: internal rotation of the methyl group
5. Internal rotation of the methyl group in the electronically excited state: o-, m-, and p-fluorotoluene
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1. Spectroscopy of N-methylpyrrole-RG (RG = Ar, Kr) complexes: First excited neutral and ground cationic states;Chemical Physics Letters;2022-09
2. Strong Torsion–Vibration Interaction in N-Methylpyrrole Observed by Far-Infrared Spectroscopy;The Journal of Physical Chemistry A;2022-03-31
3. Comment on “Electronic, vibrational and torsional couplings in N-methylpyrrole: Ground, first excited and cation states” [J. Chem. Phys. 154, 224305 (2021)];The Journal of Chemical Physics;2021-09-21
4. Ultrafast decay dynamics of N-ethylpyrrole excited to the S1 electronic state: A femtosecond time-resolved photoelectron imaging study;Chinese Journal of Chemical Physics;2021-08
5. Electronic, vibrational, and torsional couplings in N-methylpyrrole: Ground, first excited, and cation states;The Journal of Chemical Physics;2021-06-14
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