Van der Waals stretching and bending force constants from the rotational spectrum of argon… 1,3,5-trioxane
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Reference18 articles.
1. Rotational spectrum, structure, and intramolecular force field of the ArClCN van der Waals complex
2. The rotational Zeeman effect in the ArOCS van der Waals complex
3. Spectroscopic investigations of hydrogen bonding interactions in the gas phase. I. The determination of the geometry, dissociation energy, potential constants and electric dipole moment of the hydrogen-bonded heterodimer HCN • • • HF from its microwave rotational spectrum
4. The angle deformation force field for the hydrogen-bonded heterodimer CH3CN⋯HF determined with the aid of the centrifugal distortion constant DJK
5. Determination of stretching force constants of weakly bound dimers from centrifugal distortion constants
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1. Pathways for inversion in the oxirane–argon complex;Journal of Molecular Structure;2001-12
2. Complexes of neon with nonaromatic ring molecules: Rotational spectrum, dynamics, and bond energy of 2,5-dihydrofuran–neon;The Journal of Chemical Physics;1999-05-08
3. Stability and structure of van der Waals complexes between argon and sulfur containing compounds: tetrahydrothiophene–argon;Physical Chemistry Chemical Physics;1999
4. Rotational spectrum and dynamics of tetrahydrofuran–argon;Chemical Physics;1998-12
5. Free Jet Absorption Millimeter Wave Spectrum and van der Waals Potential Energy Surface of the Pyridazine−Argon Adduct;The Journal of Physical Chemistry A;1997-12-01
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