Locating and confirming the C–H stretch bands of the halide–acetylene anion complexes using argon predissociation spectroscopy
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Reference19 articles.
1. Infrared spectra of Cl−–(C2H2)n (1⩽n⩽9) anion clusters: Spectroscopic evidence for solvent shell closure
2. Infrared spectra of Br−-(C2H2) complexes
3. Structural and energetic properties of the Br−–C2H2 anion complex from rotationally resolved mid-infrared spectra and ab initio calculations
4. Infrared spectra of I−–(C2H2) (1≤n≤4) anion complexes
5. Potential energy surface and lower bound states of HCCH-Cl[sup −]
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1. Chiral discrimination between tyrosine and β-cyclodextrin revealed by cryogenic ion trap infrared spectroscopy;Physical Chemistry Chemical Physics;2020
2. Anion photoelectron spectroscopy and high level ab initio calculations of the halide–acetylene dimer complexes;Chemical Physics Letters;2015-01
3. Infrared Spectra and ab initio Calculations for Fluoride-acetylene Clusters: F - -(HCCH)n, n=3 - 6;Australian Journal of Chemistry;2011
4. Vibrational Spectroscopy of Nitroalkane Chains Using Electron Autodetachment and Ar Predissociation;The Journal of Physical Chemistry A;2008-07-29
5. Interactions between the Chloride Anion and Aromatic Molecules: Infrared Spectra of the Cl-−C6H5CH3, Cl-−C6H5NH2 and Cl-−C6H5OH Complexes;The Journal of Physical Chemistry A;2007-05-27
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