Publication:
Density functional study of the reaction mechanism of two oxiimine alcohol formations and their novel rearrangements

dc.contributor.buuauthorKaya, Yunus
dc.contributor.departmentFen Edebiyat Fakültesi
dc.contributor.departmentKimya Bölümü
dc.contributor.researcheridGXH-7079-2022
dc.contributor.scopusid35181446100
dc.date.accessioned2023-09-08T12:28:42Z
dc.date.available2023-09-08T12:28:42Z
dc.date.issued2016-02-04
dc.description.abstractIn this study, the reaction mechanisms of isonitrosoacetophenone (inapH) with ethanolamine (ea) and 1-phenylethanolamine (pea) have been investigated theoretically using B3LYP/6-311G(d, p) method to explain why the formation and unexpected rearrangement products occur or not occur. While the reaction between isonitrosoacetophenone (inapH) with ethanolamine gives oximine alcohol (Ib), the reaction of 1-phenylethanolamine with inapH results in the formation of oximine alcohol with a different substituent (Ia) and amido alcohol (IIa), which is the unexpected rearrangement product. The rearrangement driving forces of compounds from Ia to IIa are calculated as ca. 28 and 23 kJ/mol in the gas and EtOH phases, respectively. These driving forces have been calculated ca. 46 and 45 kJ/mol for the rearrangement of compound Ib to obtain IIb in the same phases, respectively. This high driving force shows that the compound IIb cannot be obtained from rearrangement of compound Ib as described experimentally in the literature. In addition, as the DFT functionals poorly describe dispersion effects, dispersion correction for reaction heat and free-energy barrier was estimated using the wB97X-D/6-311G(d, p). In general, the relative free energies of all molecules calculated from wB97XD method are lower than performed from B3LYP level. The changes of thermodynamic properties for all molecules with temperature ranging from 100 to 500 K have been obtained using the statistical thermodynamic method.
dc.identifier.citationKaya, Y. (2016). "Density functional study of the reaction mechanism of two oxiimine alcohol formations and their novel rearrangements". Helvetica Chimica Acta, 99(5), 333-346.
dc.identifier.endpage346
dc.identifier.issn0018-019X
dc.identifier.issn1522-2675
dc.identifier.issue5
dc.identifier.scopus2-s2.0-84969703330
dc.identifier.startpage333
dc.identifier.urihttps://doi.org/10.1002/hlca.201500155
dc.identifier.urihttps://onlinelibrary.wiley.com/doi/10.1002/hlca.201500155
dc.identifier.urihttp://hdl.handle.net/11452/33804
dc.identifier.volume99
dc.identifier.wos000378653200001
dc.indexed.wosSCIE
dc.language.isoen
dc.publisherWiley
dc.relation.bapKUAP(F)-2015/20
dc.relation.journalHelvetica Chimica Acta
dc.relation.publicationcategoryMakale - Uluslararası Hakemli Dergi
dc.rightsinfo:eu-repo/semantics/closedAccess
dc.subjectChemistry
dc.subjectMechanism
dc.subjectOxiimine alcohol
dc.subjectAmido alcohol
dc.subjectDFT calculations
dc.subjectNBO analysis
dc.subjectSchiff-base formation
dc.subjectBeckmann rearrangement
dc.subjectAB-initio
dc.subjectCrystal-structure
dc.subjectConformational-analysis
dc.subjectPlatinum complexes
dc.subjectMatrix-isolation
dc.subjectMetal-complexes
dc.subjectGas-phase
dc.subjectOxime
dc.subjectDispersions
dc.subjectEthanolamines
dc.subjectMechanisms
dc.subjectMolecules
dc.subjectDensity-functional study
dc.subjectDFT calculation
dc.subjectDispersion correction
dc.subjectDispersion effect
dc.subjectNBO analysis
dc.subjectReaction mechanism
dc.subjectRelative free energy
dc.subjectThermodynamic methods
dc.subjectFree energy
dc.subject.emtree1 phenylethanolamine
dc.subject.emtreeAcetophenone derivative
dc.subject.emtreeEthanolamine
dc.subject.emtreeImine
dc.subject.emtreeIsonitrosoacetophenone
dc.subject.emtreeOxiimine alcohol
dc.subject.emtreePhenylethanolamine derivative
dc.subject.emtreeUnclassified drug
dc.subject.emtreeArticle
dc.subject.emtreeChemical bond
dc.subject.emtreeChemical reaction
dc.subject.emtreeDensity functional theory
dc.subject.emtreeDipole
dc.subject.emtreeDispersion
dc.subject.emtreeEnergy transfer
dc.subject.emtreePriority journal
dc.subject.emtreeReaction analysis
dc.subject.emtreeSynthesis
dc.subject.emtreeThermodynamics
dc.subject.scopusIsonitrosoacetophenone; Oximes; Acetaldoxime
dc.subject.wosChemistry, multidisciplinary
dc.titleDensity functional study of the reaction mechanism of two oxiimine alcohol formations and their novel rearrangements
dc.typeArticle
dc.wos.quartileQ3
dspace.entity.typePublication
local.contributor.departmentFen Edebiyat Fakültesi/Kimya Bölümü
local.indexed.atScopus
local.indexed.atWOS

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