Search results for "Zirconi"

showing 10 items of 413 documents

Fracture resistance and the mode of failure produced in metal-free crowns cemented onto zirconia abutments in dental implants.

2019

The purpose of the investigation was to analyze fracture resistance and mode of failure of zirconium oxide (zirconia) abutments placed on dental implants bearing crowns of different esthetic materials: zirconia, lithium disilicate (LDS), and nano-ceramic resin, for replacing single teeth in the anterior sector. Eighty implant-abutment-crown units were divided into four groups: Group T-MC (control): 20 metal-ceramic crowns cemented onto titanium abutments; Group Z-Z: 20 zirconia crowns on zirconia abutments; Group Z-LD: 20 lithium disilicate crowns on zirconia abutments; and Group Z-NCR: 20 nano-ceramic resin crowns on zirconia abutments. Specimens underwent a fatiguing process (dynamic load…

CeramicsTeethMedical Implantsmedicine.medical_treatmentDentistry02 engineering and technologyMaterial Fatigue0302 clinical medicineMaterials PhysicsMaterials TestingMedicine and Health SciencesCubic zirconiaDental Restoration FailureMaterialsDental CementumTitaniumProstheticsMultidisciplinaryCrownsPhysicsQRClassical Mechanics021001 nanoscience & nanotechnologyChemistryPhysical SciencesMedicineEngineering and TechnologyAnatomy0210 nano-technologyTitaniumResearch ArticleBiotechnologyChemical ElementsMaterials scienceScienceBiomaterial ImplantsMaterials ScienceAbutmentchemistry.chemical_elementBioengineeringLithiumCrown (dentistry)Anterior region03 medical and health sciencesmedicineHumansTitanium ImplantsDental ImplantsDamage Mechanicsbusiness.industryBiology and Life Sciences030206 dentistryDental PorcelainAssistive TechnologieschemistryMetal freeJawFracture (geology)Zirconium oxideMedical Devices and EquipmentZirconiumbusinessDigestive SystemHeadPloS one
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Implant-supported metal-ceramic and resin-modified ceramic crowns: A 5-year prospective clinical study.

2018

Abstract Statement of problem Because of market demand for innovation, new restoration materials have been introduced without adequate testing; clinical failure may be the consequence, and clinical studies are needed. Purpose The purpose of this clinical study was to evaluate the biological and mechanical clinical behavior of implant-supported resin-modified ceramic crowns compared with that of metal-ceramic crowns. Material and methods Forty-two participants aged between 35 and 65 years received single implants in posterior edentulous sites. After the osseointegration period, half of the implants (selected randomly) (n=25) were restored with metal-ceramic crowns (MC group) and the other ha…

Ceramicsmedicine.medical_treatmentDentistryDental AbutmentsCrown (dentistry)Osseointegration03 medical and health sciences0302 clinical medicineDental porcelainstomatognathic systemDental AbutmentsmedicineCeramicDental Restoration FailureProspective StudiesSurvival rateDental ImplantsCrownsbusiness.industryDental prosthesis030206 dentistryDental PorcelainMetalsvisual_artvisual_art.visual_art_mediumImplantDental Prosthesis Implant-SupportedZirconiumOral SurgerybusinessThe Journal of prosthetic dentistry
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Study of solid state kinetics using voltammetry of immobilized particles. Application to tetragonal to monoclinic transition in nanoparticulate zirco…

2012

Abstract The voltammetry of immobilized particles methodology is applied to study solid state reaction kinetics on the basis of the electrocatalytic ability of solids toward selected electrochemical processes. Measurement of the time variation of catalytic current for oxygen evolution reaction in aqueous alkaline media provides a direct estimate of fractional conversion of the reactant in the course of the reaction for testing different reaction kinetic models. This methodology is applied to analyze the formation of monoclinic zirconia and praseodymia-doped zirconia from tetragonal precursors. Discrimination between competing and successive reactions mechanisms is obtained for reactions inv…

Chemical kineticsTetragonal crystal systemAqueous solutionMaterials scienceGeneral Chemical EngineeringInorganic chemistryElectrochemistryOxygen evolutionCubic zirconiaVoltammetryCatalysisMonoclinic crystal systemElectrochimica Acta
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Decay properties of neutron-rich niobium isotopes

1976

The decay of neutron-rich niobium isotopes in the mass region $A\ensuremath{\simeq}100$ has been investigated by $\ensuremath{\gamma}$-ray singles and $\ensuremath{\gamma}$-$\ensuremath{\gamma}$ coincidence measurements. The isotopes were produced by thermal-neutron induced fission of $^{235}\mathrm{U}$, $^{239}\mathrm{Pu}$, and $^{249}\mathrm{Cf}$, and niobium was separated from fission-product mixtures with an automated chemical procedure. Isomerism was found in the even-mass niobium isotopes with the following half-lives: 1.5 and 3.1 sec for $^{100}\mathrm{Nb}$, 1.3 and 4.3 sec for $^{102}\mathrm{Nb}$, and 0.8 and 4.8 sec for $^{104}\mathrm{Nb}$. Half-lives and $\ensuremath{\gamma}$ rays…

Chemical procedureNuclear reactionPhysicsNuclear and High Energy PhysicsZirconiumIsotopeFissionAstrophysics::High Energy Astrophysical PhenomenaNiobiumchemistry.chemical_elementChemical separationNuclear physicschemistryNeutronAtomic physicsPhysical Review C
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Mechanical, Kinetic and Morphological Correlations during the Scale Growth of Niobium and Zirconium Oxides

2001

Oxidation of niobium at 700°C and zirconium at 850°C, in air or oxygen pressures from 20 to I 000 hPa, lead to the formation in one case of a stratified Nb 2 O 5 oxide scale and in the other case a more compact ZrO 2 oxide scale. Analyses of the evolutions of phases, crystalline textures and mechanical stresses during oxidation are determined by X-ray diffraction techniques. Interactions between chemical processes, crystalline building and mechanical processes constitute together the driving force of the reaction and can explain the differences in morphologies of oxide scales.

Chemical processZirconiumMaterials scienceMechanical EngineeringNiobiumOxidechemistry.chemical_elementMineralogyCondensed Matter PhysicsOxygenCorrosionchemistry.chemical_compoundchemistryChemical engineeringMechanics of MaterialsNiobium oxideGeneral Materials ScienceTexture (crystalline)Materials Science Forum
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Conversion of levulinic acid to γ-valerolactone over Zr-containing metal-organic frameworks: Evidencing the role of Lewis and Brønsted acid sites

2021

Zr-containing UiO-66 and MOF-808 are evaluated for converting levulinic acid (LA) into γ-valerolactone (GVL) through various routes: (i) Step-wise esterification of LA to n-butyl levulinate (nBuL) and Meerwein-Ponndorf-Verley (MPV) reduction to GVL; (ii) One-pot two-steps esterification with n-butanol followed by MPV reduction with sec-butanol; and (iii) direct conversion of LA into GVL through a tandem reaction. Selection of this multistep complex reaction evidences the participation of the different acid sites (Lewis or Brønsted) of the material in each individual step: Brønsted-induced acid sites catalyze esterification reaction efficiently, while Lewis acid sites are the preferred sites…

ChemistryProcess Chemistry and TechnologyZirconium MOFsCatalysisCatalysischemistry.chemical_compoundSulfationLevulinic acidCascade reactionUiO-66Levulinic acidOrganic chemistryMetal-organic frameworkLewis acids and basesPhysical and Theoretical ChemistrySulfateGamma-valerolactoneBrønsted–Lowry acid–base theoryMOF-808Molecular Catalysis
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Diastereoselective Insertion of Isocyanide into the Alkyl−Metal Bond of Methylbenz[ e ]indenyl ansa ‐Zirconocene Complexes

2004

Alkylation of ansa-zirconocene [Zr{(η5-C5H5)SiMe2(MBI)}Cl2] (MBI = η5-2-Me−C13H7) with MgRCl gave the dimethyl complex [Zr{(η5-C5H5)SiMe2(MBI)}Me2], but unresolvable mixtures containing mono-alkylated compounds were obtained when bulkier alkyls were used. However pure dialkyl complexes [Zr{(η5-C5H5)SiMe2(MBI)}R2] (R = CH2Ph, CH2SiMe3) were easily obtained using K(CH2Ph) and Li(CH2SiMe3) as alkylating agents. Diastereoselective insertion into the MBI-unprotected Zr−R bond was observed when all of these dialkyl complexes were treated with 2,6-xylyl isocyanide to give the iminoacyl compounds [Zr{(η5-C5H5)SiMe2(MBI)}R{CR[η2-N-(2,6-xylyl)]}] (R = Me, CH2Ph, CH2SiMe3). All of the new complexes we…

Cienciachemistry.chemical_classificationZirconiumMetallocenesStereochemistryScienceIsocyanidechemistry.chemical_elementSCIENCEIsocyanidesAlkylationMedicinal chemistryQuímica inorgánicaPolymerizationInorganic Chemistrychemistry.chemical_compoundchemistryPolymerizationCIENCIAZirconiumInsertionChemistry inorganicAlkylMetallic bondingEuropean Journal of Inorganic Chemistry
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MoSi2 laser cladding—elaboration, characterisation and addition of non-stabilized ZrO2 powder particles

2003

International audience; The cladding process using laser beam radiation comprises different operational regimes, depending on the involved lasers (usually CO2 or Nd:YAG) and materials. A series of experiments has been carried out to investigate Nd:YAG laser cladding using MoSi2 powder. Procedures and operating parameters for producing clad layers has been developed and their properties evaluated. The feasibility of the laser cladding technique, using a high power Nd:YAG laser, by projecting MoSi2 powder on steel substrate was demonstrated. The results indicate a low density of cracks, elevated powder catchment efficiency (between 65 and 90%) and hardness values around 1200–1300 HV. Our goal…

Cladding (metalworking)Materials scienceIntermetallicsMechanical EngineeringMetallurgyMetals and AlloysLaser processing[ PHYS.COND.CM-MS ] Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]General ChemistryRadiationLaserCorrosion- and erosion-resistant applicationslaw.inventionPhase identificationCorrosionMechanics of Materialslaw[PHYS.COND.CM-MS]Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]Materials ChemistryLow densityCubic zirconiaLaser beams
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MoSi2 laser cladding—A new experimental procedure: double-sided injection of MoSi2 and ZrO2

2003

International audience; In the last decade, development of low density advanced material systems for service at temperatures up to 1300 °C was one of the goals of many researches. This kind of material should mainly have moderate fracture toughness and should exhibit oxidation resistant behaviour at low and intermediate temperature. One of the most studied materials continues to be the intermetallic compound MoSi2. The molybdenum disilicide has been considered as an attractive candidate due to its melting point (2030 °C) and excellent oxidation resistance at high temperatures. The main problem associated with the MoSi2 layer synthesized using laser beam is the layer fragility. To avoid this…

Cladding (metalworking)TechnologyMaterials scienceCladdingMetallurgyMolybdenum disilicideIntermetallic[ PHYS.COND.CM-MS ] Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]Laser beam weldingLaserSurfaces and InterfacesGeneral ChemistrypowderCondensed Matter PhysicsMicrostructureSurfaces Coatings and FilmsMoSi2chemistry.chemical_compoundFracture toughnesschemistryMaterials ChemistryMelting point[PHYS.COND.CM-MS]Physics [physics]/Condensed Matter [cond-mat]/Materials Science [cond-mat.mtrl-sci]ZrO2Cubic zirconia
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Thermodynamics of ABO3-Type Perovskite Surfaces

2011

The ABO3-type perovskite manganites, cobaltates, and ferrates (A= La, Sr, Ca; B=Mn, Co, Fe) are important functional materials which have numerous high-tech applications due to their outstanding magnetic and electrical properties, such as colossal magnetoresistance, half-metallic behavior, and composition-dependent metal-insulator transition (Coey et al., 1999; Haghiri-Gosnet & Renard, 2003). Owing to high electronic and ionic conductivities. these materials show also excellent electrochemical performance, thermal and chemical stability, as well as compatibility with widely used electrolyte based on yttrium-stabilized zirconia (YSZ). Therefore they are among the most promising materials as …

Colossal magnetoresistanceMaterials scienceThermodynamicsIonic bondingPrimitive cell02 engineering and technologyCrystal structure021001 nanoscience & nanotechnology01 natural sciences7. Clean energy0103 physical sciencesPhysical chemistryCubic zirconiaOrthorhombic crystal system010306 general physics0210 nano-technologyYttria-stabilized zirconiaPerovskite (structure)
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