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Calculated hyperfine coupling constants for 5,5-dimethyl-1-pyrroline N-oxide radical products in water and benzene

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dc.creator Karakaya, M.
dc.creator Nardali, S.
dc.creator Ucun, F.
dc.date 2017-11-01T00:00:00Z
dc.date.accessioned 2021-12-03T11:16:17Z
dc.date.available 2021-12-03T11:16:17Z
dc.identifier 223b2da3-4e9d-41ab-ab62-e6d6d286ce80
dc.identifier 10.1134/s0036024417110164
dc.identifier https://avesis.sdu.edu.tr/publication/details/223b2da3-4e9d-41ab-ab62-e6d6d286ce80/oai
dc.identifier.uri http://acikerisim.sdu.edu.tr/xmlui/handle/123456789/90404
dc.description The optimized structures of some radical adducts of 5,5-dimethyl-1-pyrroline N-oxide were computed by different methods on ESR spectra. As trapped radicals, H, N-3, NH2, CH3, CCl3, OOH in water and F, OH, CF3, CH2OH, OC2H5 in benzene solutions were used. The calculated isotropic hyperfine coupling constants of all the trapped radicals were compared with the corresponding experimental data. The hyperfine coupling constant due to the beta proton of the nitroxide radical was seen to be consist with the McConnel's relation alpha(beta) = B (0) + B (1)cos(2)theta and, to be effected with the opposite spin density of oxygen nucleus bonded to the nitrogen. It was concluded that in hyperfine calculations the DFT(B3PW91)/LanL2DZ level is superior computational quantum model relative to the used other level. Also, the study has been enriched by the computational of the optimized geometrical parameters, the hyper conjugative interaction energies, the atomic charges and spin densities for all the radical adducts.
dc.language eng
dc.rights info:eu-repo/semantics/closedAccess
dc.title Calculated hyperfine coupling constants for 5,5-dimethyl-1-pyrroline N-oxide radical products in water and benzene
dc.type info:eu-repo/semantics/article


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