Search results for "PHOTOCATALYSIS"

showing 10 items of 606 documents

Au/CeO2 Photocatalyst for the Selective Oxidation of Aromatic Alcohols in Water under UV, Visible and Solar Irradiation

2021

Au nanoparticles supported on CeO2 have been prepared and investigated as photocatalysts for the photocatalytic selective oxidation of benzyl alcohol and 4-methoxybenzyl alcohol to the correspondent benzaldehydes, in aqueous suspensions and room conditions under UV, visible and natural solar light irradiation. Au nanoparticles have been supported by impregnation (1 and 3 wt.%) on two types of CeO2 (i.e., a commercial one and a home prepared oxide obtained in the presence of NaOH as precipitation agent). The Au impregnated samples showed strong visible radiation absorption at 565–570 nm associated to localized surface plasmon resonance (LSPR). The bare CeO2 samples are activated by UV light …

CeOMaterials sciencevisible light photocatalysisAu-CeO; 2; CeO; 2; Plasmonic effect; Visible light photocatalysis2OxideNanoparticleTP1-1185PhotochemistryAldehydeCatalysisplasmonic effectplasmonic effect; CeO<sub>2</sub>; Au-CeO<sub>2</sub>; visible light photocatalysischemistry.chemical_compoundCeO<sub>2</sub>Au-CeOIrradiationVisible light photocatalysisPhysical and Theoretical ChemistrySurface plasmon resonanceQD1-999chemistry.chemical_classificationAqueous solutionChemical technologyChemistryPlasmonic effectchemistryBenzyl alcoholPhotocatalysisAu-CeO2Au-CeO<sub>2</sub>CeO2
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On the Interaction between 1D Materials and Living Cells

2020

One-dimensional (1D) materials allow for cutting-edge applications in biology, such as single-cell bioelectronics investigations, stimulation of the cellular membrane or the cytosol, cellular capture, tissue regeneration, antibacterial action, traction force investigation, and cellular lysis among others. The extraordinary development of this research field in the last ten years has been promoted by the possibility to engineer new classes of biointerfaces that integrate 1D materials as tools to trigger reconfigurable stimuli/probes at the sub-cellular resolution, mimicking the in vivo protein fibres organization of the extracellular matrix. After a brief overview of the theoretical models r…

Cellular membraneMaterials sciencelcsh:BiotechnologyBiomedical EngineeringTheoretical modelsregenerative medicineNanotechnologyBiointerface02 engineering and technologyReviewbioelectronics010402 general chemistry01 natural sciencesRegenerative medicineBiomaterials1D materialsbiointerfacelcsh:TP248.13-248.651D materials CNTs bioelectronics biointerface photocatalysis polymers regenerative medicineMicroscale chemistrypolymerslcsh:R5-920BioelectronicsCNTs021001 nanoscience & nanotechnology0104 chemical sciencesProtein fibreslcsh:Medicine (General)0210 nano-technologyphotocatalysisMaterial chemistryJournal of Functional Biomaterials
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Photocatalytic Properties of Cement-Based Plasters and Paints Containing Mineral Pigments

2010

Innovative cement-based premix products for surface coating of buildings that possess photocatalytic activity arouse great interest because of the results they can achieve in reducting air pollution and maintaining aesthetics. This photoactivity is induced by a photocatalyst, titanium dioxide, that can accelerate the oxidation processes of air pollutants, particularly nitrogen oxides and volatile organic compounds, which are mainly produced by incomplete combustion of fuel and are present in urban environments through the exhaust gases of motor vehicles. Surfaces that are coated with these products acquire a self-cleaning characteristic (maintenance of original color) because the decomposi…

CementMaterials scienceWaste managementMechanical EngineeringAir pollutionmedicine.disease_causeCombustionDecompositionchemistry.chemical_compoundSurface coatingPigmentchemistryvisual_artTitanium dioxidemedicinePhotocatalysisvisual_art.visual_art_mediumCivil and Structural EngineeringTransportation Research Record: Journal of the Transportation Research Board
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Engineering Photocatalytic Cements: Understanding TiO2 Surface Chemistry to Control and Modulate Photocatalytic Performances

2010

The present work addresses the aggregation/dispersion properties of two commercial titanias for application as photocatalysts in concrete technology. A microsized m-TiO2 (average particle size 153.7 ± 48.1 nm) and a nanosized n-TiO2 (average particle size 18.4 ± 5.0 nm) have been tested in different ionic media (Na+, K+, Ca2+, Cl−, SO42−, synthetic cement pore solution) at different pHs and in real cement paste specimens. Results highlighted that ion–ion correlations play a fundamental role in TiO2 particles aggregation in the cement environment. A particle aggregation model derived from TiO2 surface chemistry is proposed here and used to justify such aggregation phenomena in real cement pa…

CementMaterials sciencechemistry.chemical_compoundParticle aggregationAdsorptionchemistryMaterials ChemistryCeramics and CompositesPhotocatalysisParticle sizeCementitiousCalcium silicate hydrateComposite materialDispersion (chemistry)Journal of the American Ceramic Society
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A comparison between photocatalytic and catalytic oxidation of 2-Propanol over Au/TiO2-CeO2 catalysts

2016

Abstract Photocatalytic and catalytic oxidation of 2-propanol, representative of volatile organic compounds (VOC’s), were compared over mixed TiO 2 –CeO 2 -based catalysts. The effect of different amounts of CeO 2 and the presence of gold (1 wt%) on TiO 2 was investigated. In the photocatalytic oxidation CeO 2 had a negative effect on the performance towards the alcohol conversion of both TiO 2 –CeO 2 and Au/TiO 2 –CeO 2 catalysts, being Au/TiO 2 the most active system. On the contrary mixed TiO 2 –CeO 2 and Au/TiO 2 –CeO 2 samples showed a higher catalytic oxidation efficiency for 2-propanol conversion compared to the single oxides. In this case Au/CeO 2 catalyst had the best performance. …

Cerium oxideInorganic chemistryOxideCatalytic combustion02 engineering and technology010402 general chemistryCatalytic combustion01 natural sciencesCatalysisCatalysisCatalysichemistry.chemical_compoundPhotocatalysiPhysical and Theoretical ChemistryChemistryProcess Chemistry and TechnologyCerium oxide021001 nanoscience & nanotechnology0104 chemical sciencesCatalytic oxidationTitanium dioxidePhotocatalysisTitanium dioxideSelective oxidationGoldSettore CHIM/07 - Fondamenti Chimici Delle Tecnologie0210 nano-technologyBET theory
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Exploring the photothermo-catalytic performance of brookite tio2-ceo2 composites

2020

The thermocatalytic, photocatalytic and photothermo-catalytic oxidation of some volatile organic compounds (VOCs), 2-propanol, ethanol and toluene, was investigated over brookite TiO2-CeO2 composites. The multi-catalytic approach based on the synergistic effect between solar photocatalysis and thermocatalysis led to the considerable decrease in the conversion temperatures of the organic compounds. In particular, in the photothermo-catalytic runs, for the most active samples (TiO2-3 wt% CeO2 and TiO2-5 wt% CeO2), the temperature at which 90% of VOC conversion occurred was about 60 &deg

Cerium oxideMaterials science02 engineering and technologylcsh:Chemical technology010402 general chemistry01 natural sciencesRedoxCatalysisCatalysislcsh:Chemistrychemistry.chemical_compoundAir purification Brookite Cerium oxide Photocatalysis VOCslcsh:TP1-1185Physical and Theoretical ChemistryComposite materialcerium oxideEthanolBrookiteVOCsbrookitePhotothermal therapy021001 nanoscience & nanotechnologyToluene0104 chemical scienceslcsh:QD1-999chemistryair purificationvisual_artvisual_art.visual_art_mediumPhotocatalysisSettore CHIM/07 - Fondamenti Chimici Delle Tecnologie0210 nano-technologyphotocatalysis
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Photocatalytic and photothermocatalytic applications of cerium oxide-based materials

2020

Abstract Cerium dioxide (CeO2) presents unique properties as the special electronic and optical properties of the 4f electrons, the capacity to form nonstoichiometric oxygen-deficient CeO2 − x oxides, the high oxygen mobility, and the reversible transformation between Ce4 + and Ce3 + that make it interesting for photocatalytic applications. CeO2 is a wide bandgap semiconductor (3.0–3.4 eV), but different approaches as combination with oxides, deposition of noble metals, doping with metal and nonmetal species, and the formation of surface defects have been adopted to extend its absorption towards the visible region with the aim to improve its photocatalytic performance. Cerium oxide-based ma…

CeriumCerium oxideMaterials scienceNonmetalChemical engineeringchemistryDopingPhotocatalysisWater splittingchemistry.chemical_elementCeO2 photocatalysis photothermocatalysisRedoxCatalysis
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Silver Nanoparticles in Heterogeneous Plasmon Mediated Catalysis

2015

Metallic nanoparticles are considered a new class of heterogeneous photocatalysts due to their ability to absorb solar light and convert it into chemical energy. Here, we focus on the use of silver nanoparticles in light driven catalytic processes. This chapter will start with a brief introduction to the currently available nanocomposites that contain silver nanoparticles. Then, the mechanisms behind the photocatalytic activity of those nanocomposites will be discussed.

Chemical energyNanocompositeMaterials scienceSolar lightLight drivenPhotocatalysisNanotechnologyPlasmonSilver nanoparticleCatalysis
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Photocatalytic Nanofiltration Reactors

2021

Chemical engineeringChemistryPhotocatalysisNanofiltrationNanofiltration
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ChemInform Abstract: Inorganic Materials Acting as Heterogeneous Photocatalysts and Catalysts in the Same Reactions

2016

General considerations on the differences and similarities between heterogeneous photocatalysis and thermal catalysis are presented. Some research papers are reviewed where a reaction has been carried out in the presence of an inorganic material used both as catalyst and photocatalyst. The existing literature often compares catalytic reactions undertaken with the contemporaneous presence of radiation, showing only that photocatalytic reactions can occur under milder experimental conditions and at much lower temperatures. Nevertheless, differences in mechanistic aspects, conversions and selectivities between catalytic and photocatalytic reactions should also be highlighted. These are due to …

Chemical engineeringChemistrySolid surfacePhotocatalysisInorganic materialsGeneral MedicineActivation energyCatalysisChemInform
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