Search results for "Co3O4"

showing 6 items of 6 documents

Co3O4 particles grown over nanocrystalline CeO2: influence of precipitation agents and calcination temperature on the catalytic activity for methane …

2015

Crystalline cobalt oxides were prepared by a precipitation method using three different precipitation agents, (NH4)(2)CO3, Na2CO3 and CO(NH2)(2). Cobalt oxide nanoparticles corresponding to a Co3O4 loading of 30 wt% were also deposited over high-surface area nanocrystalline ceria by the same precipitation agents. The effect of calcination temperature, 350 or 650 degrees C, on the morphological and structural properties was evaluated. Characterization by BET, XRD, SEM, TEM, Raman spectroscopy, H-2-TPR, XPS and NH3-TPD was performed and the catalytic properties were explored in the methane oxidation reaction. The nature of the precipitation agent strongly influenced the textural properties of…

Materials sciencePrecipitation (chemistry)methane oxidationInorganic chemistrychemistry.chemical_elementCatalysisMethaneNanocrystalline materiallaw.inventionceriachemistry.chemical_compoundCo3O4Chemical engineeringchemistrylawCo3O4 CeO2 methane oxidationAnaerobic oxidation of methaneCalcinationCrystalliteSettore CHIM/07 - Fondamenti Chimici Delle TecnologieCobaltCobalt oxide
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First-Principles Modelling of N-Doped Co3O4

2018

The project Nr. AP05131211 “First Principles Investigation on Catalytic Properties of N-doped Co3O4” is supported by the Ministry of Education and Science of the Republic of Kazakhstan within the framework of the grant funding for scientific and (or) scientific and technical research for 2018-2020. The authors thank T. Inerbaev and A. Popov for fruitful discussions and valuable suggestions. Yu.M. thanks M.Putnina for the technical assistance in preparation of the manuscript.

Condensed Matter::Quantum GasesMaterials sciencePhysicsQC1-999DopingGeneral EngineeringGeneral Physics and Astronomy02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesCondensed Matter::Materials ScienceCo3O4Condensed Matter::SuperconductivityoerPhysics::Atomic and Molecular Clustersco3o4:NATURAL SCIENCES:Physics [Research Subject Categories]OERPhysical chemistryelectrocatalystPhysics::Atomic Physics0210 nano-technology
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Total oxidation of propene at low temperature over Co3O4–CeO2 mixed oxides: Role of surface oxygen vacancies and bulk oxygen mobility in the catalyti…

2008

Liotta, L. F. Ousmane, M. Di Carlo, G. Pantaleo, G. Deganello, G. Marci, G. Retailleau, L. Giroir-Fendler, A.; Co3O4, CeO2 and Co3O4-CeO2 mixed oxides with Co/Ce nominal atomic ratio 0.1:5, prepared by co-precipitation method with sodium carbonate, were tested in the oxidation of propene under lean condition and the catalyst stability was checked by performing three consecutive heating-cooling cycles. Characterization of the textural properties were performed by surface area measurement BET, X-ray diffraction (XRD) and scanning electron microscopy (SEM) measurements. Among the Co3O4-CeO2 mixed oxides, Co3O4 (30 Wt%)-CeO2 (70 wt%) gives the best activity attaining full propene conversion at …

propene oxidation Co3O4 CeO2Process Chemistry and TechnologyInorganic chemistrychemistry.chemical_elementBinary compound[CHIM.CATA]Chemical Sciences/Catalysis02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnologyHeterogeneous catalysis01 natural sciencesOxygenCatalysis0104 chemical sciencesCatalysisPropenechemistry.chemical_compoundchemistryDesorptionAtomic ratio0210 nano-technologySodium carbonateApplied Catalysis A: General
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Theoretical approach for determining the relation between the morphology and surface magnetism of Co3O4

2017

Abstract Precisely controlling the different aspects of the morphology and magnetic properties of metal oxides are fundamental to materials design. A theoretical approach, based on the Wulff construction and magnetization density (M) index, is presented to clarify the relation between the morphology and surface magnetism. The M index allows us to evaluate the uncompensated spins at the (1 0 0), (1 1 0), (1 1 1) and (1 1 2) surfaces of Co3O4 with a spinel structure. The investigated morphologies show an excellent agreement with the experimental results, with the main contribution coming from the (1 0 0) and (1 1 1) magnetic planes. The present results are also helpful in clarifying the intri…

Materials scienceMorphology (linguistics)MagnetismNanoparticle02 engineering and technologyengineering.material010402 general chemistry01 natural sciencesMagnetizationCo3O4morphologyWulff constructionSpinsCondensed matter physicsSpinel021001 nanoscience & nanotechnologyCondensed Matter PhysicsSurface energy0104 chemical sciencesElectronic Optical and Magnetic Materialssurface energyspin densitymagnetismengineeringWulff construction0210 nano-technology
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Honeycomb supported Co3O4/CeO2 catalysts for CO/CH4 emissions abatement: effect of low Pd-Pt content on the catalytic activity

2007

Abstract A structured Co3O4–CeO2 composite oxide, containing 30% by weight of Co3O4, has been prepared over a cordieritic honeycomb support. The bimetallic, Pd–Pt catalyst has been obtained by impregnation of the supported Co3O4–CeO2 with Pd and Pt precursors in order to obtain a total metal loading of 50 g/ft3. CO, CH4 combined oxidation tests were performed over the catalyzed monoliths in realistic conditions, namely GHSV = 100,000 h−1 and reaction feed close to emission from bi-fuel vehicles. The Pd–Pt un-promoted Co3O4–CeO2 is promising for cold-start application, showing massive CO conversion below 100 °C, in lean condition. A strong enhancement of the CH4 oxidation activity, between 4…

Materials scienceComposite oxideHoneycomb supported Co3O4–CeO2 Promotion effect of Pd–Pt CO and CH4 oxidation Low-temperature activityProcess Chemistry and TechnologyNanotechnologyGeneral ChemistryOxidation ActivityCatalysisCatalysisMetalChemical engineeringvisual_artvisual_art.visual_art_mediumHoneycombBimetallic strip
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Properties of atomic layer deposited nanolaminates of zirconium and cobalt oxides

2018

Producción Científica

Materials scienceSilicon116 Chemical sciencesta221chemistry.chemical_element02 engineering and technologyDielectricChemical vapor deposition7. Clean energy01 natural sciencesSpray pyrolysisThermal barrier coatingÓxidos metálicosSPRAY-PYROLYSISDIELECTRICSnanorakenteetmagnetoelectrics0103 physical sciencesNanolaminatesnanolaminatesSILICON010302 applied physicsZirconiumta114ZRO2 THIN-FILMSCO3O4 FILMSBUFFER LAYERatomikerroskasvatus021001 nanoscience & nanotechnologyElectronic Optical and Magnetic MaterialsTHERMAL BARRIER COATINGSCHEMICAL-VAPOR-DEPOSITIONchemistryChemical engineeringLASER DEPOSITIONNanoláminasatomic layer depositionMetal oxides221 Nano-technologyohutkalvot0210 nano-technologyLayer (electronics)CobaltGAS SENSORS
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