Search results for "Paramagnetic"

showing 10 items of 600 documents

Computational modeling of isotropic electron paramagnetic resonance spectra of doublet state main group radicals

2007

The combined use of theoretical and mathematical methods in the analysis of electron paramagnetic resonance data has greatly increased the ability to interpret even the most complex spectra reported for doublet state inorganic main group radicals. This personal account summarizes the theoretical basis of such an approach and provides an in-depth discussion of some recent illustrative examples of the utilization of this methodology in practical applications. The emphasis is on displaying the enormous potential embodied within the approach. peerReviewed

Electron nuclear double resonanceBasis (linear algebra)ChemistryRadicalOrganic ChemistryIsotropypääryhmien alkuaineiden radikaalitBiochemistrySpectral linelaw.inventionInorganic Chemistryspectral simulationlawGroup (periodic table)Computational chemistryMaterials ChemistrysimulointiPhysical and Theoretical ChemistryAtomic physicsEPR spektroskopiaElectron paramagnetic resonancemain group radicalsEPR spectroscopyDoublet stateJournal of Organometallic Chemistry
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Electron paramagnetic resonance line shape investigation of the Si-29 hyperfine doublet of the E'γ center in a-SiO2

2007

We report an experimental study by electron paramagnetic resonance (EPR) spectroscopy of the E′γ center and of its hyperfine structure, consisting in a pair of lines split by 42 mT. Our results show that two types of E′γ centers can be distinguished on the basis of the EPR line shapes of their main resonance line and hyperfine structure. (© 2007 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim)

Electron nuclear double resonanceChemistrySettore ING-IND/20 - Misure E Strumentazione NucleariSettore FIS/01 - Fisica SperimentaleCenter (category theory)radiazione gammaCondensed Matter Physicslaw.inventionNuclear magnetic resonanceelectron paramagnetic resonancelawAtomic physicsSpectroscopyElectron paramagnetic resonanceResonance lineHyperfine structureLine (formation)
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Investigation on the microscopic structure of E' center in amorphous silicon dioxide by electron paramagnetic resonance spectroscopy

2006

The E′δ center is one of the most important paramagnetic point defects in amorphous silicon dioxide ( a-SiO 2) primarily for applications in the field of electronics. In fact, its appearance in the gate oxide of metal-oxide-semiconductor (MOS) structures seriously affects the proper work of many devices and, often, causes their definitive failure. In spite of its relevance, until now a definitive microscopic model of this point defect has not been established. In the present work we review our experimental investigation by electron paramagnetic resonance (EPR) on the E′δ center induced in γ-ray irradiated a-SiO 2. This study has driven us to the determination of the intensity ratio between…

Electron nuclear double resonanceMaterials scienceCondensed matter physicsSiliconAmorphous silicon dioxide point defect E′ centerschemistry.chemical_elementStatistical and Nonlinear PhysicsCondensed Matter PhysicsCrystallographic defectlaw.inventionParamagnetismDelocalized electronUnpaired electronchemistrylawAtomic physicsElectron paramagnetic resonanceHyperfine structure
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EPR on Radiation-Induced Defects in SiO2

2014

Continuous-wave electron paramagnetic resonance (EPR) spectroscopy has been the technique of choice for the studies of radiation-induced defects in silica (SiO2) for 60 years, and has recently been expanded to include more sophisticated techniques such as high-frequency EPR, pulse electron nuclear double resonance (ENDOR), and pulse electron spin echo envelope modulation (ESEEM) spectroscopy. Structural models of radiation-induced defects obtained from single-crystal EPR analyses of crystalline SiO2 (alfa-quartz) are often applicable to their respective analogues in amorphous silica (a-SiO2), although significant differences are common.

Electron nuclear double resonanceMaterials sciencePulse (signal processing)Settore FIS/01 - Fisica SperimentaleRadiation inducedOxygen vacancylaw.inventionNuclear magnetic resonancelawSingle-crystal and glass EPR multi-frequency EPR pulse ENDOR pulse ESEEM coordinate system oxygen vacancy silicon vacancy impurity defects electronic structures dynamic propertiesAmorphous silicaElectron paramagnetic resonanceSpectroscopyEnvelope (waves)
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Investigation of Oxygen-Related Luminescence Centres in AlN Ceramics

2000

The structure of oxygen-related luminescence centres in nominally undoped and Y 2 O 3 doped AlN ceramics was investigated by electron paramagnetic resonance (EPR), electron nuclear double resonance (ENDOR) and optically-detected EPR. The photoluminescence-detected EPR lines having g-values of 1.990 and 2.008 were assigned to a recombination between neighbouring donor and acceptor pairs. The two EPR lines at g = 1.987 and 2.003 detected via the recombination luminescence in the afterglow are thought to be due to a recombination between the same, but distant donor and acceptor pairs. The donor was previously speculated to be an electron trapped on an oxygen impurity which substitutes for a ni…

Electron nuclear double resonancePhotoluminescenceChemistryDopingMineralogyElectronCondensed Matter PhysicsAcceptorElectronic Optical and Magnetic Materialslaw.inventionCrystallographylawVacancy defectLuminescenceElectron paramagnetic resonancephysica status solidi (b)
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Electron paramagnetic resonance investigation on the hyperfine structure of the center in amorphous silicon dioxide

2007

Abstract We report an experimental investigation by electron paramagnetic resonance (EPR) spectroscopy on the hyperfine structure of the E δ ′ center in γ-ray irradiated amorphous silicon dioxide materials. This study has driven us to the determination of the intensity ratio between the hyperfine doublet and the main resonance line of this point defect. This ratio was obtained for a variety of silica samples and compared with the analogous ratio obtained for the E γ ′ defect. The comparison definitively confirms that the electronic wave function involved in the E δ ′ center is actually delocalized over four nearly equivalent Si atoms.

Electron nuclear double resonanceSettore ING-IND/20 - Misure E Strumentazione NucleariChemistrySettore FIS/01 - Fisica SperimentaleSilica Electron spin resonance DefectsAnalytical chemistryCondensed Matter PhysicsCrystallographic defectElectronic Optical and Magnetic Materialslaw.inventionDelocalized electronlawMaterials ChemistryCeramics and CompositesIrradiationAtomic physicsElectron paramagnetic resonanceWave functionSpectroscopyHyperfine structureJournal of Non-Crystalline Solids
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Radiācijas defektu EPR fluorīdu kristālos un oksifluorīdu stikla keramikā

2008

Elektroniskā versija nesatur pielikumus

Electron paramagnetic resonance spectroscopy techniquesElektronu paramagnētiskās rezonanses spektroskopijas metodeStructure of radiation induced defectsFizika un astronomijaFizika materiālzinātne matemātika un statistikaFizikaRadiācijas defektu struktūra
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Measurement of white wines resistance against oxidation by Electron Paramagnetic Resonance spectroscopy

2018

International audience; Free radical theory of aging hypothesizes that oxygen-derived radicals are responsible for the storage-related flavor instability in wine. In an optimal situation, a balanced-distribution exists between oxidants and antioxidants among wines intrinsic/extrinsic metabolites. Based on the kinetic study of POBN-1-hydroxyethyl spin adduct (POBN-1-HER) formation in wines initiated via the Fenton reaction, a novel tool based on EPR spin trapping methodology was developed to quantify wines resistance against oxidation. Antioxidant capacities of wines were evaluated according to POBN-1-HER maximum signal intensity (Imax POBN-1-HER) and rate formation (r(POBN-1-HER)) kinetic p…

Electron paramagnetic resonance spectroscopyAntioxidantFree Radicalssulfur-dioxidemedicine.medical_treatmentRadicalWinePhotochemistry01 natural sciencesAnalytical ChemistryAdductlaw.invention0404 agricultural biotechnologylaw[SDV.IDA]Life Sciences [q-bio]/Food engineeringmedicineAging potentialElectron paramagnetic resonanceFlavorFree-radical theory of agingdegradationWineparametersChemistryfree-radical generation010401 analytical chemistryRadical chemistryElectron Spin Resonance Spectroscopyfood and beveragesPolyphenolstemperature04 agricultural and veterinary sciencesGeneral Medicine040401 food science0104 chemical sciencescolorElectron Paramagnetic ResonancearomaSulfur dioxideidentificationSpin Labelsepr spectroscopyOxidation-ReductionFood Science
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Temperature dependence of the isotropic hyperfine coupling constants in 1,4-hydroquinone and 1,4-dihydroxynaphthalene cation radicals

1998

Electron paramagnetic resonance spectroscopyHyperfine couplingchemistry.chemical_compoundHydroquinoneChemistryComputational chemistryRadicalIsotropyPhysical chemistryGeneral Materials ScienceGeneral ChemistryMagnetic Resonance in Chemistry
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Evaluation of the original dose in irradiated dried fruit by EPR spectroscopy

2011

Abstract The electron paramagnetic resonance spectroscopy (EPR) is one of the physical methods, recommended by the European Committee for Standardization, for the identification of irradiated food containing cellulose, such as dried fruit. In this work the applicability of EPR as identification method of irradiated pistachios, hazelnuts, peanuts, chestnuts, pumpkin seeds is evaluated; the time stability of the radiation induced signal is studied and the single aliquot additive dose method is used to evaluate the dose in the product.

Electron paramagnetic resonance spectroscopyRadiationPumpkin seedDried fruitRadiochemistryAnalytical chemistryfood and beveragesRadiation inducedcelluloseSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)food.foodlaw.inventionchemistry.chemical_compoundfoodchemistrylawEPR irradiated food; celluloseEPR irradiated foodFood irradiationIrradiationCelluloseElectron paramagnetic resonanceInstrumentationRadiation Measurements
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