Matrix‐Isolation Study of the Infrared Spectrum of the Free Radical F2CN
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.1669732
Reference15 articles.
1. The ultraviolet absorption spectrum of the F 2 CN radical
2. Spectroscopic Study of the Vacuum‐Ultraviolet Photolysis of Matrix‐Isolated HCN and Halogen Cyanides. Infrared Spectra of the Species CN and XNC
3. Cyanogen Fluoride: Synthesis and Properties
4. Infrared Spectroscopic Study of the Photolysis of Methyl Azide and Methyl‐d3 Azide in Solid Argon and Carbon Dioxide
5. Vacuum‐Ultraviolet Photolysis of Acetylene in Inert Matrices. Spectroscopic Study of the Species C2
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1. A theoretical study of the CX2N radicals (X = F, Cl, Br): The effect of halogen substitution on structure, isomerization, and energetics;The Journal of Chemical Physics;2012-01-28
2. Accurate Harmonic/Anharmonic Vibrational Frequencies for Open-Shell Systems: Performances of the B3LYP/N07D Model for Semirigid Free Radicals Benchmarked by CCSD(T) Computations;Journal of Chemical Theory and Computation;2010-02-04
3. Spectroscopy and structure of free radicals stabilized in cryogenic matrices;Russian Chemical Reviews;2009-08-31
4. Benchmark calculations for molecules in the gas phase: State-of-the-art coupled-cluster computations;International Journal of Quantum Chemistry;2009-07-06
5. The role of accurate quantum mechanical computations in the assignment of vibrational spectra for unstable free radicals: H2CN and F2CN as test cases;Chemical Physics Letters;2009-01
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