Matrix isolation and ab initio study on HCN/CO 2 system and its radiation-induced transformations: Spectroscopic evidence for HCN⋯CO 2 and trans-HCNH⋯CO 2 complexes
Spectroscopic characteristics and X-ray induced transformations of the HCN⋯CO complex in solid Ar and Kr matrices were studied by FTIR spectroscopy and ab initio calculations at the CCSD(T) level. The complex was prepared by deposition of the HCN/CO /Ng gas mixtures (Ng = Ar or Kr). The comparison o...
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Published in | The Journal of chemical physics Vol. 145; no. 21; p. 214309 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
United States
07.12.2016
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Online Access | Get more information |
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Summary: | Spectroscopic characteristics and X-ray induced transformations of the HCN⋯CO
complex in solid Ar and Kr matrices were studied by FTIR spectroscopy and ab initio calculations at the CCSD(T) level. The complex was prepared by deposition of the HCN/CO
/Ng gas mixtures (Ng = Ar or Kr). The comparison of the experiment and calculations prove formation of a linear, H-bonded NCH⋯OCO complex with a substantial red shift of the C-H stretching band and a blue shift of the H-C-N bending band in respect to the monomer. This result is in contrast with the previous gas-phase observations, where only T-shape complex was found. Irradiation of deposited matrices leads to formation of CN radicals and HNC molecules and subsequent annealing results in appearance of H
CN and trans-HCNH in both matrices plus HKrCN in the case of Kr. In the presence of CO
, the strongest absorption of trans-HCNH radical demonstrates an additional blue-shifted (by 6.4 cm
) feature, which was assigned to the N-coordinated complex of this radical with CO
on the basis of comparison with calculations. To our knowledge, it is the first experimentally observed complex of this radical. No evidence was found for HKrCN⋯CO
complex, which was explained tentatively by steric hindrance. |
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ISSN: | 1089-7690 |