Spectra of CO 2 ‐Kr in the 4.3 μm region: Intermolecular Bend and Symmetry Breaking of the Intramolecular CO 2 Bend
Author:
Affiliation:
1. Department of Physics and Astronomy University of Calgary 2500 University Drive North West Calgary Alberta T2N 1N4 Canada
2. National Research Council of Canada Ottawa Ontario K1A 0R6 Canada
Funder
Natural Sciences and Engineering Research Council of Canada
Publisher
Wiley
Subject
General Chemistry
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1002/slct.202202601
Reference17 articles.
1. Optothermal‐infrared and pulsed‐nozzle Fourier‐transform microwave spectroscopy of rare gas–CO2complexes
2. Infrared absorption spectroscopy of rare-gas ? CO2 clusters produced in supersonic expansions
3. Induced dipole moments and intermolecular force fields of rare gas-carbon dioxide complexes studied by Fourier-transform microwave spectroscopy
4. Infrared spectroscopy of Kr–12C18O2: Change in the CO2 intramolecular potential by complex formation and isotope effect on the vibrationally averaged intermolecular geometry
5. New infrared spectra of CO2–Xe: modelling Xe isotope effects, intermolecular bend and stretch, and symmetry breaking of the CO2 bend
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1. Theoretical Insights into the Vibrational Structure of Carbon Dioxide Rare-Gas Complexes;The Journal of Physical Chemistry A;2024-05-21
2. Spectra of Rg-water dimers in the region of the D 2 O ν 3 asymmetric stretch (Rg = Ar, Kr, Xe);Molecular Physics;2023-09-18
3. Doped rare gas clusters up to completion of first solvation shell, CO2–(Rg)n, n = 3–17, Rg = Ar, Kr, Xe;The Journal of Chemical Physics;2023-03-15
4. Spectra of CO2-Rg2 and CO2-Rg-He trimers (Rg = Ne, Ar, Kr, and Xe): Intermolecular CO2 rock, vibrational shifts and three-body effects;The Journal of Chemical Physics;2022-11-28
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