Search results for "titanium"

showing 10 items of 878 documents

Iron deposition on TiO2(110): effect of the surface stoichiometry and roughness

1999

Abstract Characterizations of ultra-thin iron films deposited on TiO 2 (110) surfaces with different stoichiometries, roughnesses and crystallinities have been carried out by X-ray photoelectron spectroscopy (XPS) and Auger electron spectroscopy (AES). For a high initial roughness of the substrate, a 2D growth mode is observed up to three monolayers. But, if the initial roughness is low, clusters grow on the TiO 2 surface. Whatever the initial surface stoichiometry, electronic exchanges occur between titanium and iron leading to a reduction of titanium and an oxidation of iron. This interaction between iron and titanium dioxide surface takes place only at the interface between the metal and…

Auger electron spectroscopyInorganic chemistrytechnology industry and agricultureOxidechemistry.chemical_elementSurfaces and InterfacesSurface finishCondensed Matter PhysicsSurfaces Coatings and Filmschemistry.chemical_compoundchemistryX-ray photoelectron spectroscopyTitanium dioxideMaterials ChemistryLayer (electronics)StoichiometryTitaniumSurface Science
researchProduct

Fabrication of layered nanostructures by successive electron beam induced deposition with two precursors: protective capping of metallic iron structu…

2011

We report on the stepwise generation of layered nanostructures via electron beam induced deposition (EBID) using organometallic precursor molecules in ultra-high vacuum (UHV). In a first step a metallic iron line structure was produced using iron pentacarbonyl; in a second step this nanostructure was then locally capped with a 2-3 nm thin titanium oxide-containing film fabricated from titanium tetraisopropoxide. The chemical composition of the deposited layers was analyzed by spatially resolved Auger electron spectroscopy. With spatially resolved x-ray absorption spectroscopy at the Fe L₃ edge, it was demonstrated that the thin capping layer prevents the iron structure from oxidation upon e…

Auger electron spectroscopyMaterials scienceNanostructureAbsorption spectroscopyMechanical Engineeringtechnology industry and agricultureAnalytical chemistrychemistry.chemical_elementBioengineeringGeneral ChemistryElectron spectroscopyIron pentacarbonylchemistry.chemical_compoundchemistryChemical engineeringMechanics of MaterialsGeneral Materials ScienceElectrical and Electronic EngineeringElectron beam-induced depositionLayer (electronics)TitaniumNanotechnology
researchProduct

Multi-doped Brookite-Prevalent TiO2 Photocatalyst with Enhanced Activity in the Visible Light

2018

© 2018 Springer Science+Business Media, LLC, part of Springer Nature Abstract: Enabling solar and/or visible light-driven photocatalysis is a crucial step to access innovative applications in environmental science and sustainable energy. Titanium dioxide is the most used photocatalyst because of its low cost and toxicity, however it is also limitedly active under visible light irradiation due to its wide band gap. Among its polymorphs, brookite holds promising optoelectronic properties for visible light photocatalysis, which have to the best of our knowledge been limitedly exploited. Here, a C,S,N-doped brookite-based TiO2has been prepared via a rapid one-pot sol–gel synthesis. Besides subs…

Band gap02 engineering and technology010402 general chemistry01 natural sciencesCatalysisHeterogeneous catalysichemistry.chemical_compoundVisible-light photocatalysiSpecific surface areaBrookiteDopingHeterogeneous catalysisbusiness.industryBrookiteDopingWide-bandgap semiconductorGeneral Chemistry021001 nanoscience & nanotechnology0104 chemical sciencesVisible-light photocatalysischemistryvisual_artTitanium dioxidePhotocatalysisvisual_art.visual_art_mediumOptoelectronicsTitanium dioxide0210 nano-technologybusinessVisible spectrum
researchProduct

Electron Transfer from Organic Aminophenyl Acid Sensitizers to Titanium Dioxide Nanoparticle Films

2009

Electron transfer from three conjugated amino-phenyl acid dyes to titanium and aluminum oxide nanocrystalline films was studied by using transient absorption spectroscopy with sub 20 fs time-resolution over the visible spectral region. All the dyes attached to TiO2 showed long-lived ground state bleach signals indicative of formation of new species. Global analysis of the transient kinetics of the dyes on TiO2 revealed stimulated emission decays of about 40 fs and less than 300 fs assigned to electron injection. The same dyes on Al2O3 substrates displayed long stimulated emission decays (ns) suggesting that electron transfer is blocked in this high band gap semiconductor. For two of the dye…

Band gapConjugated systemPhotochemistrySurfaces Coatings and FilmsElectronic Optical and Magnetic Materialschemistry.chemical_compoundElectron transferGeneral EnergychemistryTitanium dioxideUltrafast laser spectroscopyDensity functional theoryStimulated emissionPhysical and Theoretical ChemistrySpectroscopyThe Journal of Physical Chemistry C
researchProduct

Photocatalytic oxidation mechanism of benzonitrile in aqueous suspensions of titanium dioxide

2007

Abstract The photocatalytic oxidation of benzonitrile was carried out in aqueous suspensions (pH 11) of commercial polycrystalline TiO 2 (Merck and Degussa P25) irradiated by ultraviolet light. The rate of decomposition was dependent on the concentration of benzonitrile and followed a pseudo-first order kinetics. The complete mineralization of a 0.70 mM benzonitrile solution was achieved in ca. 8 h by using TiO 2 Degussa P25, whereas the substrate was only partially mineralized even after 14 h of irradiation in the presence of TiO 2 Merck. The final oxidation products were carbonate and nitrate. The appearance and the evolution of organic and inorganic intermediate species were also investi…

Benzonitrilechemistry.chemical_compoundAqueous solutionchemistryTitanium dioxideUltraviolet lightPhotocatalysisSubstrate (chemistry)General ChemistryMineralization (soil science)PhotochemistryCatalysisCatalysisCatalysis Today
researchProduct

The excellent biocompatibility and negligible immune response of the titanium heterometallic MOF MUV-10

2021

The Ti-Ca heterometallic MOF MUV-10 exhibits good dispersibility in phosphate buffer and low phosphate-induced degradation in comparison to other MOF systems. It induces no cytotoxicity towards cells of the immune system and no inmune response, making it an attractive candidate for biomedical applications and demonstrating its safe use for other applications.

BiocompatibilityBiomedical Engineeringchemistry.chemical_elementBiocompatible Materials02 engineering and technology010402 general chemistry01 natural sciencesMiceImmune systemMaterials TestingAnimalsHumansGeneral Materials ScienceParticle SizeCytotoxicityMetal-Organic FrameworksTitaniumfungiPhosphate buffered salineImmunityGeneral ChemistryGeneral Medicine021001 nanoscience & nanotechnologyCombinatorial chemistry0104 chemical scienceschemistryDegradation (geology)Calcium0210 nano-technologyTitaniumJournal of Materials Chemistry B
researchProduct

Titanium Lattice Structures Produced via Additive Manufacturing for a Bone Scaffold: A Review

2023

The progress in additive manufacturing has remarkably increased the application of lattice materials in the biomedical field for the fabrication of scaffolds used as bone substitutes. Ti6Al4V alloy is widely adopted for bone implant application as it combines both biological and mechanical properties. Recent breakthroughs in biomaterials and tissue engineering have allowed the regeneration of massive bone defects, which require external intervention to be bridged. However, the repair of such critical bone defects remains a challenge. The present review collected the most significant findings in the literature of the last ten years on Ti6Al4V porous scaffolds to provide a comprehensive summa…

Biomaterialstitanium alloylattice structuresscaffoldsBiomedical Engineeringmechanical propertiesbone tissue engineeringadditive manufacturingJournal of Functional Biomaterials
researchProduct

Efficient removal of bisphenol A from wastewaters: Catalytic wet air oxidation with Pt catalysts supported on Ce and Ce–Ti mixed oxides

2019

Catalytic wet air oxidation (CWAO) of an aqueous solution of bisphenol A (BPA) was investigated at 160 ℃ and 2.0 MPa of air in a batch reactor. Activity of supported platinum catalysts (2.5 wt%), prepared by wet impregnation, was compared with pure cerium and cerium–titanium oxide catalysts. Supported platinum catalysts showed higher activities in the removal of BPA than pure CeO2, Ce0.8Ti0.2O2 and Ce0.2Ti0.8O2. The oxidation reaction was followed the pseudo-first order rate law and the highest BPA removal, 97% and 95%, was achieved with Pt/CeO2 and Pt/Ce0.8Ti0.2O2 catalysts respectively. The CWAO of BPA aqueous solution was not a surface area specific reaction but the more important factor…

Bisphenol AAqueous solutionbisphenol ABatch reactorOxidechemistry.chemical_elementCatalysisCeriumchemistry.chemical_compoundchemistryXPSlcsh:TA401-492lcsh:Materials of engineering and construction. Mechanics of materialsCWAOplatinumWet oxidationPlatinumcerium–titaniumNuclear chemistryAIMS Materials Science
researchProduct

The effect of silver nanoparticles, zinc oxide nanoparticles, and titanium dioxide nanoparticles on the push-out bond strength of fiber posts

2019

Background This study was undertaken to investigate the effect of intraradicular dentin pretreatment with silver nanoparticles (SNPs), zinc oxide nanoparticles (ZNPs), and titanium oxide nanoparticles (TNPs) on the push-out bond strength (PBS) of fiber posts to root dentin using two types of resin cements. Material and methods Eighty single-rooted human premolar roots were randomly divided into eight groups after endodontic treatment and post space preparation, according to the type of intraradicular dentin pretreatment with different nanoparticle solutions (n=20). The groups included no pretreatment (control) and pretreatments with SNPs, ZNPs, and TNPs. Each group was divided into 2 subgro…

Bond strengthRoot canalResearch0206 medical engineeringchemistry.chemical_elementNanoparticle030206 dentistry02 engineering and technologyZinc:CIENCIAS MÉDICAS [UNESCO]020601 biomedical engineeringSilver nanoparticleTitanium oxideOperative Dentistry and Endodontics03 medical and health sciences0302 clinical medicinemedicine.anatomical_structurechemistryUNESCO::CIENCIAS MÉDICASmedicineDentinFiberGeneral DentistryNuclear chemistry
researchProduct

Production of bone mineral material and BMP-2 in osteoblasts cultured on double acid-etched titanium

2017

Background: The study of osteoblasts and their osteogenic functions is essential in order to understand them and their applications in implantology. In this sense, this study try to study BMP-2 production and bone matrix deposition, in addition to other biological variables, in osteoblasts cultured on a rough double acid-etched titanium surface (Osseotite®, Biomet 3i, Palm Beach Garden, Florida, USA) in comparison to a smooth titanium surface (machined) and a control Petri dish. Material and Methods: An in vitro prospective study. NHOst human osteoblasts from the femur were cultured on three different surfaces: Control group: 25-mm methacrylate dish (n = 6); Machined group: titanium discs w…

Bone Morphogenetic Protein 2chemistry.chemical_element02 engineering and technologyMethacrylateBone morphogenetic protein 2law.invention03 medical and health sciences0302 clinical medicineAcid Etching DentallawHumansFemurGeneral DentistryUNESCO:CIENCIAS MÉDICASCells CulturedTitaniumBone mineralOsteoblastsResearchPetri dish030206 dentistryAdhesion021001 nanoscience & nanotechnologyMachined surfaceOtorhinolaryngologychemistrySurgeryOral Surgery0210 nano-technologyTitaniumBiomedical engineeringMedicina Oral Patología Oral y Cirugia Bucal
researchProduct