Comparative matrix isolation infrared spectroscopy study of 1,3- and 1,4-diene monoterpenes (-Phellandrene and -Terpinene)

2011
journal article
article
25
cris.lastimport.wos2024-04-10T02:43:01Z
dc.abstract.enIn the present work, $\gamma$-terpinene (a 1,4-diene derivative) and $\alpha$-phellandrene (1,3-diene derivative) were isolated in cryogenic argon matrices and their structures, vibrational spectra, and photochemistries were characterized with the aid of FTIR spectroscopy and quantum chemical calculations performed at the DFT/B3LYP/6-311++G(d,p) level of approximation. The molecules bear one conformationally relevant internal rotation axis, corresponding to the rotation of the isopropyl group. The calculations provide evidence of three minima on the potential energy surfaces of the studied molecules, where the isopropyl group assumes the trans, gauche+, and gauche conformations (T, G+, G- ). The signatures of all these conformers were identified in the experimental matrix infrared spectra, with the T forms dominating, in agreement with the theoretical predicted abundances in gas phase at room temperature. In situ UV ($\lambda$ > 200 nm) irradiation of matrix-isolated $\alpha$-phellandrene led to its isomerization into an open-ring species. The photoproduct was found to exhibit the ZE configuration of its backbone, which to be formed from the reactant molecule does not require extensive structural rearrangements of both the reagent and matrix. $\gamma$-Terpinene was photostable when subjected to irradiation under the same experimental conditions. In addition, the liquid compounds at room temperature were also investigated by FTIR-ATR and FT-Raman spectroscopies.pl
dc.affiliationWydział Chemii : Zakład Fizyki Chemicznejpl
dc.affiliationPion Rektora : Jagiellońskie Centrum Rozwoju Lekówpl
dc.contributor.authorMarzec, Katarzyna M. - 145326 pl
dc.contributor.authorReva, I.pl
dc.contributor.authorFausto, R.pl
dc.contributor.authorProniewicz, Leonard - 131552 pl
dc.date.accessioned2016-09-07T17:02:04Z
dc.date.available2016-09-07T17:02:04Z
dc.date.issued2011pl
dc.description.number17pl
dc.description.physical4342-4353pl
dc.description.volume115pl
dc.identifier.doi10.1021/jp2013122pl
dc.identifier.eissn1520-5215pl
dc.identifier.issn1089-5639pl
dc.identifier.urihttp://ruj.uj.edu.pl/xmlui/handle/item/30087
dc.languageengpl
dc.language.containerengpl
dc.rightsDodaję tylko opis bibliograficzny*
dc.rights.licenceBez licencji otwartego dostępu
dc.rights.uri*
dc.subject.enargon matricespl
dc.subject.enexperimental conditionspl
dc.subject.enFT- Raman spectroscopypl
dc.subject.enFT-IR-ATRpl
dc.subject.enFTIR spectroscopypl
dc.subject.engasphasepl
dc.subject.enGauche conformationpl
dc.subject.enin-situpl
dc.subject.eninternal rotationspl
dc.subject.enisopropyl groupspl
dc.subject.enmatrixpl
dc.subject.enmatrix infrared spectrapl
dc.subject.enmatrix isolation infrared spectroscopypl
dc.subject.enmonoterpenespl
dc.subject.enPhellandrenepl
dc.subject.enphotoproductspl
dc.subject.enphotostablepl
dc.subject.enquantum chemical calculationspl
dc.subject.enreactant moleculespl
dc.subject.enring speciespl
dc.subject.enroom temperaturepl
dc.subject.enstructural rearrangementpl
dc.subject.enTerpinenepl
dc.subject.enfourier transform infrared spectroscopypl
dc.subject.enirradiationpl
dc.subject.enisomerspl
dc.subject.enmoleculespl
dc.subject.enolefinspl
dc.subject.enquantum chemistrypl
dc.subject.enRaman spectroscopypl
dc.subject.enrotationpl
dc.subject.enargonpl
dc.subject.enalpha phellandrenepl
dc.subject.engamma-terpinenepl
dc.subject.enterpenepl
dc.subject.enterpinenepl
dc.subject.enarticlepl
dc.subject.enchemical structurepl
dc.subject.enchemistrypl
dc.subject.encomparative studypl
dc.subject.eninfrared spectrophotometrypl
dc.subject.enquantum theorypl
dc.subject.enmolecular structurepl
dc.subject.enispectrophotometrypl
dc.subject.eninfraredpl
dc.subtypeArticlepl
dc.titleComparative matrix isolation infrared spectroscopy study of 1,3- and 1,4-diene monoterpenes ($\alpha$-Phellandrene and $\gamma$-Terpinene)pl
dc.title.journalThe Journal of Physical Chemistry. Apl
dc.typeJournalArticlepl
dspace.entity.typePublication
cris.lastimport.wos
2024-04-10T02:43:01Z
dc.abstract.enpl
In the present work, $\gamma$-terpinene (a 1,4-diene derivative) and $\alpha$-phellandrene (1,3-diene derivative) were isolated in cryogenic argon matrices and their structures, vibrational spectra, and photochemistries were characterized with the aid of FTIR spectroscopy and quantum chemical calculations performed at the DFT/B3LYP/6-311++G(d,p) level of approximation. The molecules bear one conformationally relevant internal rotation axis, corresponding to the rotation of the isopropyl group. The calculations provide evidence of three minima on the potential energy surfaces of the studied molecules, where the isopropyl group assumes the trans, gauche+, and gauche conformations (T, G+, G- ). The signatures of all these conformers were identified in the experimental matrix infrared spectra, with the T forms dominating, in agreement with the theoretical predicted abundances in gas phase at room temperature. In situ UV ($\lambda$ > 200 nm) irradiation of matrix-isolated $\alpha$-phellandrene led to its isomerization into an open-ring species. The photoproduct was found to exhibit the ZE configuration of its backbone, which to be formed from the reactant molecule does not require extensive structural rearrangements of both the reagent and matrix. $\gamma$-Terpinene was photostable when subjected to irradiation under the same experimental conditions. In addition, the liquid compounds at room temperature were also investigated by FTIR-ATR and FT-Raman spectroscopies.
dc.affiliationpl
Wydział Chemii : Zakład Fizyki Chemicznej
dc.affiliationpl
Pion Rektora : Jagiellońskie Centrum Rozwoju Leków
dc.contributor.authorpl
Marzec, Katarzyna M. - 145326
dc.contributor.authorpl
Reva, I.
dc.contributor.authorpl
Fausto, R.
dc.contributor.authorpl
Proniewicz, Leonard - 131552
dc.date.accessioned
2016-09-07T17:02:04Z
dc.date.available
2016-09-07T17:02:04Z
dc.date.issuedpl
2011
dc.description.numberpl
17
dc.description.physicalpl
4342-4353
dc.description.volumepl
115
dc.identifier.doipl
10.1021/jp2013122
dc.identifier.eissnpl
1520-5215
dc.identifier.issnpl
1089-5639
dc.identifier.uri
http://ruj.uj.edu.pl/xmlui/handle/item/30087
dc.languagepl
eng
dc.language.containerpl
eng
dc.rights*
Dodaję tylko opis bibliograficzny
dc.rights.licence
Bez licencji otwartego dostępu
dc.rights.uri*
dc.subject.enpl
argon matrices
dc.subject.enpl
experimental conditions
dc.subject.enpl
FT- Raman spectroscopy
dc.subject.enpl
FT-IR-ATR
dc.subject.enpl
FTIR spectroscopy
dc.subject.enpl
gasphase
dc.subject.enpl
Gauche conformation
dc.subject.enpl
in-situ
dc.subject.enpl
internal rotations
dc.subject.enpl
isopropyl groups
dc.subject.enpl
matrix
dc.subject.enpl
matrix infrared spectra
dc.subject.enpl
matrix isolation infrared spectroscopy
dc.subject.enpl
monoterpenes
dc.subject.enpl
Phellandrene
dc.subject.enpl
photoproducts
dc.subject.enpl
photostable
dc.subject.enpl
quantum chemical calculations
dc.subject.enpl
reactant molecules
dc.subject.enpl
ring species
dc.subject.enpl
room temperature
dc.subject.enpl
structural rearrangement
dc.subject.enpl
Terpinene
dc.subject.enpl
fourier transform infrared spectroscopy
dc.subject.enpl
irradiation
dc.subject.enpl
isomers
dc.subject.enpl
molecules
dc.subject.enpl
olefins
dc.subject.enpl
quantum chemistry
dc.subject.enpl
Raman spectroscopy
dc.subject.enpl
rotation
dc.subject.enpl
argon
dc.subject.enpl
alpha phellandrene
dc.subject.enpl
gamma-terpinene
dc.subject.enpl
terpene
dc.subject.enpl
terpinene
dc.subject.enpl
article
dc.subject.enpl
chemical structure
dc.subject.enpl
chemistry
dc.subject.enpl
comparative study
dc.subject.enpl
infrared spectrophotometry
dc.subject.enpl
quantum theory
dc.subject.enpl
molecular structure
dc.subject.enpl
ispectrophotometry
dc.subject.enpl
infrared
dc.subtypepl
Article
dc.titlepl
Comparative matrix isolation infrared spectroscopy study of 1,3- and 1,4-diene monoterpenes ($\alpha$-Phellandrene and $\gamma$-Terpinene)
dc.title.journalpl
The Journal of Physical Chemistry. A
dc.typepl
JournalArticle
dspace.entity.type
Publication
Affiliations

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