Search results for "Electron Spin Resonance Spectroscopy"

showing 10 items of 125 documents

Testing and linearity calibration of films of phenol compounds exposed to thermal neutron field for EPR dosimetry

2015

This paper reports the preliminary results obtained by Electron Paramagnetic Resonance (EPR) measurements on films of IRGANOX® 1076 phenols with and without low content (5% by weight) of gadolinium oxide (Gd2O3) exposed in the thermal column of the Triga Mark II reactor of LENA (Laboratorio Energia Nucleare Applicata) of Pavia (Italy). Thanks to their size, the phenolic films here presented are good devices for the dosimetry of beams with high dose gradient and which require accurate knowledge of the precise dose delivered. The dependence of EPR signal as function of neutron dose was investigated in the fluence range between 10(11) cm(-2) and 10(14) cm(-2). Linearity of EPR response was fou…

Settore ING-IND/20 - Misure E Strumentazione NucleariAnalytical chemistryGadoliniumFluenceTRIGAlaw.inventionNCT dosimetrychemistry.chemical_compoundPhenolslawCalibrationPhenolDosimetryIrradiationElectron paramagnetic resonanceNeutron beamNeutronsRadiationPhenolSettore ING-IND/18 - Fisica Dei Reattori NucleariSettore FIS/01 - Fisica SperimentaleElectron Spin Resonance SpectroscopyNeutron temperatureSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)Electron Paramagnetic ResonancechemistryCalibrationNuclear chemistry
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Metal complexes of the carbonic anhydrase inhibitor methazolamide (Hmacm). Crystal structure of the Zn(macm)2 (NH3)2. Anticonvulsant properties of th…

1995

Complexes of Co(II), Cu(II), and Zn(II) with deprotonated methazolamide and ammonia are synthesized and characterized. The complex Zn(macm)2(NH3)2 crystallizes in the monoclinic C2/c space group with a = 13.468(1), b = 6.759(1), c = 23.014(2) A, beta = 90.27(1), and Z = 4. The structure was refined to R = 0.049 (Rw = 0.053). The Zn(II) ion is coordinated to two deprotonated sulfonamido nitrogen atoms of the macm- ligand and two nitrogen atoms of the ammonia ligands in a distorted tetrahedron. The Zn(macm)2(NH3)2 complex is shown to be a simple model for the methazolamide inhibition of CA. EHMO calculations applied to fractional coordinates of the Zn(macm)2(NH3)2 complex indicate that the at…

Spectrophotometry InfraredCations DivalentInorganic chemistryMethazolamidechemistry.chemical_elementCrystal structureZincCrystallography X-RayBiochemistryInorganic ChemistryMetalDeprotonationmedicineAnimalsMethazolamideHOMO/LUMOMolecular StructureChemistryLigandElectron Spin Resonance SpectroscopyCobaltZincCrystallographyvisual_artvisual_art.visual_art_mediumAnticonvulsantsCoppermedicine.drugMonoclinic crystal systemJournal of Inorganic Biochemistry
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Synthesis, characterization, and crystal structure of [Cu(cinoxacinate)2] · 2H2O complex: A square-planar CuO4 chromophore. Antibacterial studies

1995

The structural and spectroscopic properties of a new copper (II) complex of cinoxacin (HCx) have been investigated. The complex [Cu(Cx)2].2H2O crystallizes in the monoclinic system, space group P2(1)/c. The cell dimensions are: a = 7.998(2), b = 7.622(1), c = 18.955(6) A, beta = 94.38(2) degree, V = 1154.6(6) A3, Z = 2. The structure was refined to R = 0.051. The crystal is composed of [Cu(Cx)2] units and uncoordinated water molecules. The Cu(II) ion, at a center of symmetry, is coordinated to two cinoxacinate (Cx) ligands related by the inversion center. Each cinoxacinate acts as bidentate ligand bonded to the cation through its carboxylate oxygen atom and through its exocyclic carbonyl ox…

Spectrophotometry InfraredStereochemistryCrystal structureMicrobial Sensitivity TestsCrystallography X-RayBiochemistryInorganic ChemistryCrystalchemistry.chemical_compoundEnterobacteriaceaeOrganometallic CompoundsMoleculeCarboxylateGroup 2 organometallic chemistryGram-Negative Aerobic BacteriaMolecular StructureChemistryLigandSpectrophotometry AtomicElectron Spin Resonance SpectroscopyChromophoreGram-Positive CocciSolubilityCinoxacinSpectrophotometry UltravioletCopperMonoclinic crystal system
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Ascorbic Acid Oxidation in Sucrose Aqueous Model Systems at Subzero Temperatures

2004

The reduction of Tempol by ascorbic acid in concentrated sucrose solutions was measured by electron paramagnetic resonance (EPR) at temperatures ranging from 16 to −16 °C. This method allowed the determination of the rate constants (k) of this fast reaction, by recording the Tempol reduction as a function of time. The two reactants were initially separated and had to migrate for the reaction to occur. The experimental findings were compared with predicted values according to the equation for diffusion-controlled reaction proposed by Atkins. The experimental reaction rate constants were observed to be lower than the calculated ones. However, the experimental values were found to be controlle…

SucroseSucroseReactionDiffusionAnalytical chemistryAscorbic Acid010402 general chemistry01 natural scienceslaw.inventionCyclic N-OxidesReaction rate[SPI]Engineering Sciences [physics]chemistry.chemical_compoundViscosityReaction rate constantlawFreezing0103 physical sciencesVitamin CElectron paramagnetic resonanceAqueous solution010304 chemical physicsdiffusionElectron Spin Resonance SpectroscopyTemperatureWaterTempolNegative temperaturesGeneral ChemistryAscorbic acid0104 chemical sciencesSolutionsKineticschemistryBiochemistrySpin LabelsElectron paramagnetic resonanceGeneral Agricultural and Biological SciencesOxidation-ReductionCryoconcentrationJournal of Agricultural and Food Chemistry
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DNA cleavage reaction induced by dimeric copper(II) complexes of N-substituted thiazole sulfonamides

2005

A new dinuclear copper(II) complex has been synthesised and structurally characterised: [Cu2(tz-ben)4] (Htz-ben = N-thiazol-2-yl-benzenesulfonamide). Its crystal structure, magnetic properties and electronic paramagnetic resonance (EPR) spectra were studied in detail. In the compound the metal centres are bridged by four non-linear triatomic NCN groups. The coordination geometry of the copper ions in the dinuclear entity is distorted square pyramidal (4+1). Two thiazole N and two sulfonamido N atoms occupy the equatorial positions and one sulfonamido O atom is in the axial position. Magnetic susceptibility data show a strong antiferromagnetic coupling, -2J = 114.1 cm(-1). The EPR spectra of…

SulfonamidesSpectrophotometry InfraredStereochemistryElectron Spin Resonance SpectroscopyDNACrystal structureZero field splittingCrystallography X-RayBiochemistryMagnetic susceptibilityMass SpectrometrySquare pyramidal molecular geometrylaw.inventionInorganic ChemistryThiazolesCrystallographychemistry.chemical_compoundchemistrylawOrganometallic CompoundsSinglet stateThiazoleElectron paramagnetic resonanceCopperCoordination geometryJournal of Inorganic Biochemistry
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Reinforced Room-Temperature Spin Filtering in Chiral Paramagnetic Metallopeptides

2020

Chirality-induced spin selectivity (CISS), whereby helical molecules polarize the spin of electrical current, is an intriguing effect with potential applications in nanospintronics. In this nascent field, the study of the CISS effect using paramagnetic chiral molecules, which could introduce another degree of freedom in controlling the spin transport, remains so far unexplored. To address this challenge, herein we propose the use of self-assembled monolayers (SAMs) of helical lanthanide-binding peptides. To elucidate the effect of the paramagnetic nuclei, monolayers of the peptide coordinating paramagnetic or diamagnetic ions are prepared. By means of spin-dependent electrochemistry, the CI…

Surface PropertiesFOS: Physical sciencesApplied Physics (physics.app-ph)02 engineering and technology010402 general chemistryLanthanoid Series Elements01 natural sciencesBiochemistryCatalysisElectron TransportParamagnetismColloid and Surface ChemistryElectrical currentMesoscale and Nanoscale Physics (cond-mat.mes-hall)ElectrochemistryOrganometallic CompoundsMoleculeAmino Acid SequenceSpin-½Spin filteringCondensed Matter - Mesoscale and Nanoscale PhysicsCondensed matter physicsChemistryElectron Spin Resonance SpectroscopyTemperatureStereoisomerismPhysics - Applied PhysicsGeneral Chemistry021001 nanoscience & nanotechnology0104 chemical sciencesModels ChemicalCondensed Matter::Strongly Correlated ElectronsGoldPeptides0210 nano-technologySelectivityJournal of the American Chemical Society
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REDUCTION OF NILUTAMIDE BY NO SYNTHASES : IMPLICATIONS FOR THE ADVERSE EFFECTS OF THIS NITROAROMATIC ANTIANDROGEN DRUG

2003

Nitric oxide synthases (NOSs) are flavohemeproteins that catalyze the oxidation of l-arginine to l-citrulline with formation of the widespread signal molecule NO. Beside their fundamental role in NO biosynthesis, these enzymes are also involved in the formation of reactive oxygen species and in the interactions with some xenobiotic compounds. Nilutamide is a nonsteroidal antiandrogen that behaves as a competitive antagonist of the androgen receptors and is proposed in the treatment of metastatic prostatic carcinoma. However, therapeutic effects of nilutamide are overshadowed by the occurrence of several adverse reactions mediated by toxic mechanism(s), which remain(s) poorly investigated. H…

Time FactorsFree RadicalsNitric Oxide Synthase Type IIImedicine.drug_class[CHIM.THER] Chemical Sciences/Medicinal ChemistryNitric Oxide Synthase Type IINitric Oxide Synthase Type I[CHIM.THER]Chemical Sciences/Medicinal ChemistryToxicologyAntiandrogenImidazolidinesNitric oxide03 medical and health scienceschemistry.chemical_compoundMice0302 clinical medicineHydroxylaminemedicineAnimalsAnaerobiosisAmines030304 developmental biologychemistry.chemical_classification0303 health sciencesReactive oxygen speciesElectron Spin Resonance SpectroscopyImidazolesAndrogen AntagonistsGeneral MedicineRecombinant Proteins3. Good healthRatsAndrogen receptorEnzymechemistryBiochemistryCompetitive antagonist030220 oncology & carcinogenesisNilutamideCattleNitric Oxide SynthaseOxidation-ReductionNADPmedicine.drug
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Effect of tin and lead chlorotriphenyl analogues on fruit fly Drosophila hydei and liposomes membrane

2011

This article presents the results of a study investigating the biological activity of triphenyltin chloride (TPhT) and two metalloorganic compounds, triphenyllead chloride (TPhL) and triphenylmethane chloride (TPhC), in their interaction with model membranes and the living organisms of fruit flies Drosophila hydei. The study of model membranes (sonicated liposomes) was conducted using the electron spin resonance (ESR) spin probe technique, whereas the experiment on fruit flies involved investigating their viability on media containing the studied compounds. The test results clearly demonstrate that TPhT affects fruit flies more actively than TPhL (complete lethality after 7 days of culture …

Triphenyltin chlorideHealth Toxicology and MutagenesisToxicologyBiochemistryChloridechemistry.chemical_compoundOrganometallic CompoundsOrganotin CompoundsmedicineAnimalsLipid bilayerMolecular BiologyDrosophilaLiposomeTriphenylmethanebiologyCell MembranefungiElectron Spin Resonance SpectroscopyTrityl CompoundsGeneral Medicinebiology.organism_classificationMembraneLeadBiochemistrychemistryTinLiposomesModels AnimalDrosophila hydeiMolecular MedicineDrosophilamedicine.drugJournal of Biochemical and Molecular Toxicology
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Effect of Chlorotriphenyl Derivatives of Sn and Pb upon Biophysical Properties of Membranes

2009

Biophysical activity of two twin organometallic compounds Triphenyltin chloride (TPhT) and Triphenyllead chloride (TPhL) in their interreaction with model membranes, as well as with yeast cellsSaccharomyces cerevisiae, was investigated. Four measurement methods were used in the experiments: two physical methods (spin probes method and the electric method); two biological methods (minimal inhibitory concentration /MIC/ and yeast survival test). It has been found that the activity of TPhT in interaction with model membranes and yeast cells is distinctly greater than that of TPhL. The activity manifests itself by considerable increase in the fluidity of the middle part of liposome bilayer, cha…

Triphenyltin chlorideTime FactorsArticle SubjectCell SurvivalHealth Toxicology and Mutagenesislcsh:BiotechnologySaccharomyces cerevisiaelcsh:MedicineSaccharomyces cerevisiaelcsh:Chemical technologylcsh:TechnologyBiophysical PhenomenaMembrane PotentialsCell membranechemistry.chemical_compoundlcsh:TP248.13-248.65GeneticsmedicineOrganometallic CompoundsOrganotin Compoundslcsh:TP1-1185Molecular BiologyLiposomebiologyChemistrylcsh:TBilayerCell Membranelcsh:RElectron Spin Resonance SpectroscopyLauric AcidsGeneral Medicinebiology.organism_classificationLauric acidYeastMembranemedicine.anatomical_structureBiochemistryLiposomesBiophysicsMolecular MedicineBiotechnologyResearch ArticleJournal of Biomedicine and Biotechnology
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Purification and spectroscopic studies on catechol oxidases from Lycopus europaeus and Populus nigra: evidence for a dinuclear copper center of type …

1999

We purified two catechol oxidases from Lycopus europaeus and Populus nigra which only catalyze the oxidation of catechols to quinones without hydroxylating tyrosine. The molecular mass of the Lycopus enzyme was determined to 39,800 Da and the mass of the Populus enzyme was determined to 56,050 Da. Both catechol oxidases are inhibited by thiourea, N-phenylthiourea, dithiocarbamate, and cyanide, but show different pH behavior using catechol as substrate. Atomic absorption spectrosopic analysis found 1.5 copper atoms per protein molecule. Using EPR spectroscopy we determined 1.8 Cu per molecule catechol oxidase. Furthermore, EPR spectroscopy demonstrated that catechol oxidase is a copper enzym…

TyrosinaseCatecholschemistry.chemical_elementPhotochemistrySpectrum Analysis RamanBiochemistrylaw.inventionTreesInorganic Chemistrychemistry.chemical_compoundlawPolymer chemistryEnzyme InhibitorsElectron paramagnetic resonanceCatechol oxidaseCatecholBinding SitesCyanidesbiologyMonophenol MonooxygenaseSpectrophotometry AtomicElectron Spin Resonance SpectroscopySubstrate (chemistry)Bridging ligandHydrogen-Ion ConcentrationPlantsPhenylthioureaCopperMolecular WeightchemistryHemocyaninsbiology.proteinSpectrophotometry UltravioletOxygen bindingCatechol OxidaseCopperJournal of biological inorganic chemistry : JBIC : a publication of the Society of Biological Inorganic Chemistry
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