Search results for "COPP"

showing 10 items of 3147 documents

Copper, iron and zinc determinations in human milk using FAAS with microwave digestion

2000

Abstract A method for determining copper, iron and zinc in human milk was optimized and validated. It includes microwave mineralization of the sample and measuring the elements by flame atomic absorption spectroscopy (FAAS). Only 2 ml of milk is needed, and the method is free of matrix interferences. The values obtained for the detection limits (0.07; 0.07; 0.11 μg/ml milk, for copper, iron and zinc) precision of the method, intra-assay (2.9; 5.2; 6.1%RSD for copper, iron and zinc) and accuracy, evaluated using recovery assays (98.8; 100.4; 95.9% for copper, iron and zinc) show that the method is useful for the purpose mentioned. Moreover, the method is rapid and simple, and the determinati…

Detection limitAccuracy and precisionChromatographyChemistryAnalytical chemistrychemistry.chemical_elementGeneral MedicineZincCopperAnalytical Chemistrylaw.inventionMatrix (chemical analysis)lawMicrowave digestionAtomic absorption spectroscopyAnalysis methodFood ScienceFood Chemistry
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FI automatic method for the determination of copper(II) based on coproporphyrin I-Cu(II)/TCPO/H(2)O(2) chemiluminescence reaction for the screening o…

2004

Abstract In this paper, an automatic method for the screening of water samples containing Cu(II) was proposed, based on peryoxalate chemiluminescence reaction using coproporphyrin I as fluorophor compound to provide selectivity and a simple flow injection (FI) chemiluminescence detector (CLD). FI system conditions were chosen in order to distinguish samples over or under legislation limit established (50 μg l−1) with high reliability. The detection limit found was 9 μg l−1 and the linear dynamic range was 15–125 μg l−1 of Cu(II). Repeatibility and reproducibility studies gave good precision and accuracy with recovery near 100%. Under these conditions, the method resulted selective and only …

Detection limitReproducibilityAccuracy and precisionChemistryAnalytical chemistrychemistry.chemical_elementCopperAnalytical Chemistrylaw.inventionchemistry.chemical_compoundlawTCPOSelectivityHydrogen peroxideChemiluminescenceTalanta
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Spectrophotometric determination of mercury(II) and silver(I) with copper(II) and diethyldithiocarbamate in the presence of triton X-100

1986

Abstract Procedures for the determination of mercury and silver by displacement of diethyldithiocarbamate (DDTC) from its copper complex in the presence of 1% Triton X-100, and measurement of the decrease in the Cu(DDTC) 2 absorbance, are described. The use of the surfactant avoids the need for an extraction step. Reproducibility within 1% and detection limits of 0.25 ppm Hg(II) and 0.45 ppm Ag(I) have been obtained, and linear calibration ranges up to 13 ppm Hg(II) and 15 ppm Ag(I). In the presence of 0.1 M EDTA very good selectivity is achieved.

Detection limitReproducibilityAnalytical chemistrychemistry.chemical_elementCopperAnalytical ChemistryMercury (element)Absorbancechemistry.chemical_compoundPulmonary surfactantchemistryTriton X-100SelectivityNuclear chemistryTalanta
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Some observations on the sensitivity of flow-injection techniques for atomic absorption spectrophotometry

1989

Abstract Different strategies for coupling flow-injection manifolds to atomic absorption spectrometers in order to obtain better sensitivity are compared. Using a T-connector interface, different carriers and flow compensation solvents have been assayed in an attempt to improve the sensitivity of flow-injection analysis. Manganese and copper determinations in sewage sludge have been used as a test system and the analytical parameters of both batch and flow-injection methods are compared.

Detection limitSpectrometerAnalytical chemistrychemistry.chemical_elementManganeseCopperAnalytical ChemistryVolumetric flow ratelaw.inventionchemistrylawSensitivity (control systems)Atomic absorption spectroscopySpectroscopySludgeMicrochemical Journal
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Major and Trace Element Geochemistry of the European Kupferschiefer – An Evaluation of Analytical Techniques

2018

Simple and rapid techniques are needed for routine quantitative chemical bulk-rock analyses of Kupferschiefer, a black shale containing variable amounts of silicates, base metal sulphides, carbonates and an organic content of up to 30 weight percent. In this study, WD-XRF, TXRF, and ICP-OES of acid- as well as peroxide-digested samples were tested as potential techniques based on their availability and adaptability to analyse major (Si, Ti, Al, Mg, Ca, Fe, K, but also Cu, Zn, Pb) and selected trace (Ag, As, Ba, Co, Mo, Ni, V) element concentrations. Because of the absence of a suitable reference material, a comparative study was undertaken using instrumental neutron activation analysis to a…

Detection limitblack shaleIsotopeChemistryTrace elementAnalytical chemistrysulphidescopper oresGeneral Chemistry010501 environmental sciences010502 geochemistry & geophysics01 natural scienceswhole-rock geochemistryDigestion (alchemy)Geochemistry and PetrologyWD-XRFICP-OESGeneral Earth and Planetary SciencesINAANeutron activation analysisOil shaleMass fractionBase metal0105 earth and related environmental sciencesGeneral Environmental Science
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CCDC 890481: Experimental Crystal Structure Determination

2013

Related Article: C.R.de Arellano, E.Escriva, C.J.Gomez-Garcia, G.M.Espallargas, R.Ballesteros, B.Abarca|2013|CrystEngComm|15|1836|doi:10.1039/c2ce26654g

Diaqua-(33'-(pyridine-26-diyl)bis[123]triazolo[15-a]pyridine)-copper(ii) bis(tetrafluoroborate) dihydrateSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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Ligand effects on the structures and magnetic properties of tricyanomethanide-containing copper(II) complexes.

2007

The preparation, crystal structure and magnetic properties of four heteroleptic copper(II) complexes with the tricyanomethanide (tcm(-)) and the heterocyclic nitrogen donors 3,6-bis(2-pyridyl)pyridazine (dppn), 2,5-bis(2-pyridyl)pyrazine (2,5-dpp), 2,3-bis(2-pyridyl)pyrazine (2,3-dpp) and 2,3-bis(2-pyridyl)quinoxaline (2,3-dpq) are reported, {[Cu(2)(dppn)(OH)(tcm)(2)] x tcm}(n) (1), {[Cu(2,5-dpp)(tcm)] x tcm}(n) (2), {[Cu(2)(2,3-dpp)(2)(tcm)(3)(H(2)O)(0.5)] x tcm x 0.5H(2)O}(n) (3) and [Cu(2,3-dpq)(tcm)(2)](n) (4). 1 has a ladder-like structure with single mu-1,5-tcm ligands forming the sides and a bis-bidentate dppn and a single mu-hydroxo providing the rung. Each copper atom in 1 exhibits…

DiazineModels MolecularDenticityPyrazineMolecular StructureSpectrophotometry InfraredStereochemistryLigandTemperatureCrystal structureCrystallography X-RayLigandsSquare pyramidal molecular geometryInorganic ChemistryPyridazineTrigonal bipyramidal molecular geometrychemistry.chemical_compoundCrystallographyMagneticschemistryNitrilesOrganometallic CompoundsCopperDalton transactions (Cambridge, England : 2003)
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Growth of nanometric CuGaxOystructures on copper substrates

2005

This paper presents an alternative method based on the metal–organic chemical vapour deposition technique to obtain new nanowire structures. Here, the metal–organic precursor acts as a catalyst and interacts with a metallic substrate to produce 3D structures such as nanowires. In the present case, trimethyl gallium interacts with a copper metallic substrate to build a single-crystalline CuGaxOy wire structure. Electronic microscopy techniques on image or diffraction modes have provided the structural and chemical characterization of the obtained nanowires.

DiffractionAlternative methodsMaterials scienceMechanical EngineeringNanowirechemistry.chemical_elementBioengineeringNanotechnologyGeneral ChemistryChemical vapor depositionCopperCatalysisCharacterization (materials science)chemistryMechanics of MaterialsGeneral Materials ScienceElectrical and Electronic EngineeringGalliumNanotechnology
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{[Cu(H2O)3][Cu(phmal)2]}n: a new two-dimensional copper(ii) complex with intralayer ferromagnetic interactions (phmal = phenylmalonate dianion)

2003

The novel sheet-like copper(II) compound of formula {[Cu(H2O)3][Cu(Phmal)2]}n (1) (Phmal = dianion of phenylmalonic acid) has been synthesized and its crystal structure determined by X-ray diffraction. The structure of 1 consists of 21 chains of carboxylate(phenylmalonate)-bridged copper(II) ions which are linked through double μ-oxo(carboxylate) units to afford a two-dimensional network. The interlayer space is filled by the phenyl rings of the phenylmalonate ligands that exhibit offset face-to-face interactions. Variable-temperature magnetic measurements of 1 show the occurrence of significant intralayer ferromagnetic interactions between the copper(II) ions through anti–syn carboxylate- …

DiffractionMagnetic measurementsInorganic chemistrychemistry.chemical_elementGeneral ChemistryCrystal structureCopperCatalysisIonchemistry.chemical_compoundCrystallographychemistryFerromagnetismPhenylmalonic acidMaterials ChemistryCarboxylateNew J. Chem.
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Enhanced chemosensing of ammonia based on the novel molecular semiconductor-doped insulator (MSDI) heterojunctions

2011

Abstract A series of new molecular semiconductor-doped insulator (MSDI) heterojunctions as conductimetric transducers to NH3 sensing were fabricated based on a novel semiconducting molecular material, an amphiphilic tris(phthalocyaninato) rare earth triple-decker complex, Eu2[Pc(15C5)4]2[Pc(OC10H21)8], quasi-Langmuir–Shafer (QLS) film, as a top-layer, and vacuum-deposited and cast film of CuPc as well as copper tetra-tert-butyl phthalocyanine (CuTTBPc) QLS film as a sub-layer, named as MSDIs 1, 2 and 3, respectively. MSDIs 1–3 and respective sub-layers prepared from three different methods were characterized by X-ray diffraction, electronic absorption spectra and current–voltage (I–V) measu…

DiffractionMaterials scienceAbsorption spectroscopyDopingMetals and AlloysAnalytical chemistrychemistry.chemical_elementHeterojunctionCondensed Matter PhysicsCopperSurfaces Coatings and FilmsElectronic Optical and Magnetic Materialschemistry.chemical_compoundchemistryMaterials ChemistryPhthalocyanineCrystalliteElectrical and Electronic EngineeringScience technology and societyInstrumentationSensors and Actuators B: Chemical
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