Search results for "Oxalate"

showing 10 items of 215 documents

Synyhesis, structure, spectroscopy and redox chemistry of square-planar nickel(II) complexes with tetradentate o-phenylenedioxamidates and related li…

2005

[EN] A series of four-coordinate square-planar nickel(II) complexes of o-phenylenebis(N¿-methyloxamidate) (L1) and related o-phenylene(N¿-methyloxamidate)oxamate (L2) and o-phenylenebis(oxamate) (L3) tetradentate ligands have been synthesized and characterized structurally, spectroscopically and electrochemically. The parent nickel(II)¿L1 complex presents an intense MLCT band in the UV region (¿max = 357 nm) and a distinctive 1 s ¿ 4p CT satellite in the Ni K-edge XANES spectrum (E = 8339.2 eV). These features together with the short Ni¿N(amidate) bond lengths (1.85¿1.93 Å) as revealed by the analysis of the Ni K-edge EXAFS spectrum and confirmed by single-crystal X-ray diffraction are typi…

Models MolecularMagnetic Resonance SpectroscopySpectrophotometry Infraredchemistry.chemical_elementPhenylenediaminesCrystallography X-RayLigandsPhotochemistrySensitivity and SpecificityRedoxlaw.inventionInorganic Chemistrychemistry.chemical_compoundNickellawElectrochemistryOrganometallic CompoundsMoleculeAcetonitrileElectron paramagnetic resonanceOxalatesMolecular StructureExtended X-ray absorption fine structureLigandElectron Spin Resonance SpectroscopySpectrometry X-Ray EmissionStereoisomerismBond lengthNickelCrystallographychemistryFISICA APLICADASpectrophotometry UltravioletOxidation-Reduction
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Multifunctional coordination polymers based on copper with modified nucleobases, easily modulated in size and conductivity.

2019

This Accepted Manuscript will be available for reuse under a CC BY-NC-ND licence after 24 months of embargo period

Models MolecularNanoprocessingCoordination polymerPolymersSupramolecular chemistrychemistry.chemical_elementConductivity010402 general chemistry01 natural sciencesBiochemistryOxalateNucleobaseInorganic Chemistrychemistry.chemical_compoundBipyridineCoordination ComplexesCoordination polymerNucleobasesMolecular Structure010405 organic chemistryChemistryHydrogen bondQuímicaCopperMagnetic and electrical properties0104 chemical sciencesCrystallographyCopperJournal of inorganic biochemistry
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Hybrid Molecular Magnets Obtained by Insertion of Decamethylmetallocenium Cations into Layered, Bimetallic Oxalate Complexes: [ZIIICp*2][MIIMIII(ox)3…

2000

A new series of hybrid organometallic - inorganic layered magnets with the formula [Z(III)Cp*2][M(II)M(III)(ox)3] (Z(III) = Co, Fe; M(III) = Cr, Fe; M(II) = Mn, Fe, Co, Cu, Zn; ox = oxalate; Cp* = pentamethylcyclopentadienyl) has been prepared. All of these compounds are isostructural and crystallize in the monoclinic space group C2/m, as found by X-ray structure analysis. Their structure consists of an eclipsed stacking of the bimetallic oxalate-based extended layers separated by layers of organometallic cations. These salts show spontaneous magnetization below To, which corresponds to the presence of ferro-, ferri-, or canted antiferromagnetism. Compounds in which the paramagnetic deca-me…

Organic ChemistryGeneral ChemistryCatalysisOxalateParamagnetismchemistry.chemical_compoundCrystallographyNuclear magnetic resonancechemistryFerromagnetismMössbauer spectroscopyAntiferromagnetismDiamagnetismIsostructuralSpontaneous magnetizationChemistry - A European Journal
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Molecular and electronic structure of square-planar nickel(ii), nickel(iii) and nickel(iii)π-cation radical complexes with a tetradentate o-phenylene…

2005

The molecular and electronic structures of the electron transfer series of four-coordinate square-planar nickel complexes with the ligand o-phenylenebis(N'-methyloxamidate), [NiL]z (z = 2-, 1-, 0), have been evaluated by DFT and TDDFT calculations, and most of their experimentally available structural and spectroscopic properties (X. Ottenwaelder et al., Dalton Trans., 2005, DOI: 10.1039/b502478a) have been reasonably reproduced at the B3LYP level of theory. The anionic species [NiL]2- and [NiL]- are genuine low-spin nickel II and nickel III complexes with diamagnetic singlet (S = 0) and paramagnetic doublet (S = 1/2) states, respectively. The nickel III complex presents shorter Ni-N(amidat…

OxalatesFree RadicalsMolecular StructureLigandchemistry.chemical_elementElectronsPhenylenediaminesLigandsPhotochemistryInorganic ChemistryParamagnetismElectron transferCrystallographyNickelModels ChemicalchemistryNickelCovalent bondCationsExcited stateOrganometallic CompoundsQuantum TheorySinglet stateGround stateOxidation-ReductionDalton Transactions
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Flow-chemiluminescence: a growing modality of pharmaceutical analysis.

2001

The present article deals with a review of the applications of the chemiluminescence to pharmaceutical analyses by using continuous-flow assemblies. A comprehensive study on the fundamentals of the chemiluminescence is also included.

OxalatesMaterials scienceModality (human–computer interaction)LuminescenceLuminescent MeasurementsMolecular StructureContinuous flowChemistry PharmaceuticalBiophysicsImidazolesOxidation reductionlaw.invention22'-DipyridylChemical engineeringFlow (mathematics)Chemistry (miscellaneous)lawCoordination ComplexesLuminescent MeasurementsAnimalsIndicators and ReagentsLuminolOxidation-ReductionChemiluminescenceFluorescent DyesLuminescence : the journal of biological and chemical luminescence
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Rapid and direct gas chromatographic determination of oxalic acid in urine

1979

The known methods of oxalic acid determination are not suitable for reliable, rapid and economical routine analysis. A rapid gas chromatographic method has been developed which dispenses with separation operations and measures oxalic acid as a diethylester by means of back-flushing, and using malonic acid as an internal standard. One determination can be conducted within 6 to 8 min. and preparation of the specimen takes about the same amount of time. If the gas chromatographic conditions are changed and more time is permitted for analysis, numerous other extractable acidic metabolites can also be determined.

Oxalateschemistry.chemical_compoundChromatography GasChromatographyChemistryUrologyOxalic acidHumansGas chromatographyUrineIn Vitro TechniquesMalonic acidRoutine analysisUrological Research
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Direct nucleation of calcium oxalate dihydrate crystals onto the surface of living renal epithelial cells in culture

1998

Direct nucleation of calcium oxalate dihydrate crystals onto the surface of living renal epithelial cells in culture. Background. The interaction of the most common crystal in human urine, calcium oxalate dihydrate (COD), with the surface of monkey renal epithelial cells (BSC-1 line) was studied to identify initiating events in kidney stone formation. Methods. To determine if COD crystals could nucleate directly onto the apical cell surface, a novel technique utilizing vapor diffusion of oxalic acid was employed. Cells were grown to confluence in the inner four wells of 24-well plates. At the start of each experiment, diethyloxalate in water was placed into eight adjacent wells, and the pla…

Oxalic acid030232 urology & nephrologyCalcium oxalateNucleationchemistry.chemical_elementApical cellCalciumKidneyOxalateCell LineCell membrane03 medical and health scienceschemistry.chemical_compoundKidney Calculi0302 clinical medicineDogsmedicineAnimalscrystallography030304 developmental biology0303 health sciencesKidneyx-ray of kidney calculiCalcium OxalateEpithelial CellsAnatomyHaplorhinimodels of stonesmedicine.anatomical_structurechemistryNephrologyBiophysicsstructural defectsCrystallizationcell membraneKidney International
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A solution study of complex formation between iron(III) and oxalate in dimethylsulphoxide

1991

The complex formation between iron(III) and oxalic acid (ethanedioic acid, H2ox) has been studied by potentiometry in dimethylsulphoxide (dmso) solution. H2ox behaves as a weak diprotic acid in such a solvent, with overall association constants: log βj1=8.551(3) and log βj2=14.242(3) at 25°C and 0.1 Mn-Bu4NClO4. A reliable set of overall stability constants for the iron(III)-oxalato complexes, log β11=13.16(4), log β12=23.66(4) and log β13=30.75(4), have been obtained for the first time under identical conditions. The electrochemical behaviour of such complexes was studied in dmso at a platinum electrode. The coordination ability of oxalate towards iron(III) in dmso and water media is compa…

Oxalic acidInorganic chemistryMetals and Alloyschemistry.chemical_elementDiprotic acidOxalateInorganic ChemistrySolventchemistry.chemical_compoundchemistryMaterials ChemistryChemical stabilityCarboxylateCyclic voltammetryPlatinumTransition Metal Chemistry
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Sialic acid-containing glycoproteins on renal cells determine nucleation of calcium oxalate dihydrate crystals

2001

Sialic acid-containing glycoproteins on renal cells determine nucleation of calcium oxalate dihydrate crystals. Background The interaction between the surfaces of renal epithelial cells and calcium oxalate dihydrate (COD), the most common crystal in human urine, was studied to identify critical determinants of kidney stone formation. Methods A novel technique utilizing vapor diffusion of oxalic acid was employed to nucleate COD crystals onto the apical surface of living cells. Confluent monolayers were grown in the inner 4 wells of 24-well culture plates. To identify cell surface molecules that regulate crystal nucleation, cells were pretreated with a protease (trypsin or proteinase K) to a…

Oxalic acidNucleationneuraminidaseKidneyOxalatelaw.inventionCell membranekidney calculichemistry.chemical_compoundlawChlorocebus aethiopsmedicineAnimalssialoglycoconjugatesCrystallizationCells CulturedGlycoproteinsKidneyCalcium OxalateproteaseTrypsinrenal stonesN-Acetylneuraminic AcidSialic acidmedicine.anatomical_structurechemistryBiochemistryNephrologyCrystallizationcell membranemedicine.drugKidney International
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Suitability of non-glucose-carbohydrates for parenteral nutrition

1975

Postoperative parenteral nutrition can only be optimally effective if the characteristics of post-traumatic metabolism are taken into account. Two main possibilities are discussed for the carbohydrate component of parenteral nutrition during this phase: glucose with high doses of insulin or non-glucose carbohydrates (sugar substitutes) possibly in a suitable combination with glucose. The risks as well as the technical and organisational problems involved in the use of them are discussed and the authors prefer the second of the two alternatives. Possible side effects of non-glucose carbohydrates are pointed out and it is shown how these can be avoided by observing dose guidelines. So far a c…

Parenteral Nutritionmedicine.medical_treatmentBlood sugarPhysiologyFructoseCarbohydrate metabolismCritical Care and Intensive Care MedicineXylitolElectrolyteschemistry.chemical_compoundPregnancyDietary CarbohydratesmedicineHumansSugarXylitolOxalatesAdenine Nucleotidesbusiness.industryInsulinProteinsBilirubinGeneral MedicineMetabolismCarbohydrateLipid MetabolismUric AcidGlucoseParenteral nutritionBiochemistrychemistryLactatesFemaleParenteral Nutrition TotalbusinessEuropean Journal of Intensive Care Medicine
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