Search results for "mesoporous material"

showing 10 items of 262 documents

Mesoporous inorganic nanoscale particles for drug adsorption and controlled release.

2018

The review provides an overview of the mesoporous inorganic particles employed as drug delivery systems for controlled and sustained release of drugs. We have classified promising nanomaterials for drug delivery on the basis of their natural or synthetic origin. Nanoclays are available in different morphologies (nanotubes, nanoplates and nanofibers) and they are typically available at low cost from natural resources. The surface chemistry of nanoclays is versatile for targeted modifications to control loading and release properties. Synthetic nanomaterials (imogolite, laponite and mesoporous silica) present the advantages of well-established purity and availability with size features that …

Drug CarriersMaterials sciencePharmaceutical ScienceNanoparticleImogoliteNanotechnology02 engineering and technologyMesoporous silica010402 general chemistry021001 nanoscience & nanotechnologySilicon Dioxide01 natural sciencesControlled release0104 chemical sciencesNanomaterialsNanofiberDelayed-Action PreparationsDrug deliveryClayHumansNanoparticlesAdsorption0210 nano-technologyMesoporous materialPorosityTherapeutic delivery
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Azatruxene‐Based, Dumbbell‐Shaped, Donor–π‐Bridge–Donor Hole‐Transporting Materials for Perovskite Solar Cells

2020

Three novel donor-π-bridge-donor (D-π-D) hole-transporting materials (HTMs) featuring triazatruxene electron-donating units bridged by different 3,4-ethylenedioxythiophene (EDOT) π-conjugated linkers have been synthesized, characterized, and implemented in mesoporous perovskite solar cells (PSCs). The optoelectronic properties of the new dumbbell-shaped derivatives (DTTXs) are highly influenced by the chemical structure of the EDOT-based linker. Red-shifted absorption and emission and a stronger donor ability were observed in passing from DTTX-1 to DTTX-2 due to the extended π-conjugation. DTTX-3 featured an intramolecular charge transfer between the external triazatruxene units and the azo…

Electron mobilityPhotoluminescence010405 organic chemistryChemistryOrganic ChemistryEnergy conversion efficiencyGeneral ChemistryConductivity010402 general chemistry01 natural sciencesCatalysis0104 chemical sciencesCrystallographyIntramolecular forceMesoporous materialAbsorption (electromagnetic radiation)Perovskite (structure)Chemistry – A European Journal
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Deep oxidation of pollutants using gold deposited on a high surface area cobalt oxide prepared by a nanocasting route.

2011

Gold deposited on a cobalt oxide with high surface area (138 m2 g−1), obtained through a nanocasting route using a siliceous KIT-6 mesoporous material as a hard template, has demonstrated high activity for the total oxidation of propane and toluene, and ambient temperature CO oxidation. The addition of gold promotes the activity when compared to a gold-free Co3O4 catalyst prepared using the same nanocasting technique. The enhanced catalytic activity when gold is present has been explained for the deep oxidation of propane and toluene in terms of the improved reducibility of cobalt oxide when gold is added, rather than to the intrinsic activity of metallic gold particles. The improved behavi…

Environmental EngineeringMaterials scienceSurface PropertiesHealth Toxicology and MutagenesisInorganic chemistryCatalysisCatalysisMetalchemistry.chemical_compoundPropaneEnvironmental ChemistryHigh surface areaNanotechnologyWaste Management and DisposalCobalt oxidePollutantOxidesCobaltPollutionToluenechemistryvisual_artvisual_art.visual_art_mediumEnvironmental PollutantsGoldMesoporous materialOxidation-ReductionJournal of hazardous materials
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Effect of the cerium loading on the HMS structure. Preparation, characterization and catalytic properties

2013

Abstract Ce–HMS mesoporous materials were prepared by incipient wetness method starting from HMS synthesized in acid condition. The effect of cerium quantity, in the range of Ce/Si atomic ratio 0.02–0.3, on its structure and properties was investigated. Results showed that the HMS hexagonal structure was maintained after the cerium adding. Furthermore, the surface area and the pore volume were reduced. The presence of the cerianite nanoparticles located within the HMS channels up to 0.05, thus covering the HMS surface at higher Ce/Si atomic ratio, was observed. The catalytic performances of the materials were tested in ethanol partial oxidation reaction.

EthanolMaterials scienceProcess Chemistry and TechnologyInorganic chemistrychemistry.chemical_elementNanoparticleGeneral ChemistryCatalysisCatalysisCharacterization (materials science)HMS Cerianite Catalytic evaluationchemistry.chemical_compoundCeriumchemistryChemical engineeringAtomic ratioPartial oxidationMesoporous materialSettore CHIM/02 - Chimica FisicaCatalysis Communications
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Molybdenum–vanadium supported on mesoporous alumina catalysts for the oxidative dehydrogenation of ethane

2006

Abstract Vanadium and/or molybdenum oxides supported on mesoporous alumina have been prepared by a “wet” impregnation method, characterized (by using several physico-chemical techniques TPR, DR-UV–vis, Raman spectroscopies) and tested in the oxidative dehydrogenation (ODH) of ethane. For comparison Mo–V-mixed oxides supported on γ-Al2O3 have also been studied. The characterization results indicate that the main vanadium species in both Mo-free and Mo-containing V-based samples present low aggregation and coordination, whereas molybdenum is present as monomeric or polymeric tetrahedral molybdenum species. Interestingly, no apparent interaction between molybdenum and vanadia takes place. The …

EthyleneInorganic chemistrychemistry.chemical_elementVanadiumGeneral ChemistryHeterogeneous catalysisCatalysisCatalysischemistry.chemical_compoundchemistryTransition metalMolybdenumDehydrogenationMesoporous materialCatalysis Today
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Optical Optimization of the TiO2 Mesoporous Layer in Perovskite Solar Cells by the Addition of SiO2 Nanoparticles

2018

In this work, SiO2 nanoparticles (NPs) were integrated into the mesoporous TiO2 layer of a perovskite solar cell to investigate their effect on cell performance. Different concentrations of SiO2/ethanol have been combined in TiO2/ethanol to prepare pastes for the fabrication of the mesoporous layer with which perovskite solar cells have been fabricated. Addition of SiO2 NPs of 50 and 100 nm sizes produces an enhancement of cell performance mainly because of an improvement of the photocurrent. This increment is in good agreement with the theoretical predictions based on light scattering induced by dielectric SiO2 NPs. The samples using modified scaffolds with NPs also present a significant l…

FabricationMaterials scienceGeneral Chemical EngineeringPerovskite solar cellNanoparticle02 engineering and technologyDielectric010402 general chemistry7. Clean energy01 natural sciencesmesoporous layerlcsh:ChemistryperovskitePerovskite (structure)Photocurrenttechnology industry and agricultureGeneral Chemistry021001 nanoscience & nanotechnology0104 chemical sciencesChemical engineeringlcsh:QD1-999solar cellsnanoparticles0210 nano-technologyMesoporous materialLayer (electronics)ACS Omega
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Synthesis of self-assembled mesoporous 3D In2O3 hierarchical micro flowers composed of nanosheets and their electrochemical properties

2018

This report describes the methodology for the fabrication of mesoporous In2O3 microflowers by hydrothermal and calcination procedures in which In(OH)3/In2S3 acts as an intermediate. Both In2O3 and its precursor were analyzed with scanning electron microscopy, energy dispersive X-ray spectrophotometry, transmission electron microscopy and powder X-ray diffraction. BET surface area, pore size and pore volume analyses were also carried out. Electron microscopy images clearly evidence the self-assembly of 2D nanosheets into the micro flower structure. The mechanism of self-assembly and calcination is reported. Electrochemical properties of the synthesized In2O3 micro flowers were studied.

FabricationMaterials scienceScanning electron microscopeGeneral Chemical Engineering02 engineering and technologymethodology for the fabrication010402 general chemistry01 natural sciencesHydrothermal circulationlaw.inventionnanorakenteetlawCalcinationmesoporous In2O3 micro flowersta116kemiallinen synteesiGeneral Chemistry021001 nanoscience & nanotechnology0104 chemical sciencesmikrorakenteetChemical engineeringTransmission electron microscopyElectron microscope0210 nano-technologyMesoporous materialBET theoryRSC Advances
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Confined growth of carbon nanoforms in one-dimension by fusion of anthracene rings inside the pores of MCM-41

2014

We report a simple two-step procedure that uses anthracene, a cheap polyaromatic hydrocarbon with low melting point, as a molecular precursor to produce carbon nanoforms (CNFs). First, we describe the chemical synthesis of graphite from the fusion of anthracene rings at relatively low temperature (520 °C) followed by cyclodehydrogenation. Next, we extend this protocol to the synthesis of CNFs by confining the molecular precursor in a mesoporous host like MCM-41. The confined environment favors one-dimensional growth of CNFs with sizes controlled by the pores of the mesoporous host.

FusionAnthraceneMaterials scienceLow melting pointchemistry.chemical_elementNanotechnologyChemical synthesischemistry.chemical_compoundChemical engineeringchemistryMCM-41General Materials ScienceGraphiteMesoporous materialCarbonNanoscale
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New heterogeneous catalysts for greener routes in the synthesis of fine chemicals

2007

Abstract New strong Lewis acid SnTf-MCM-41 and SnTf-UVM-7 catalysts with unimodal and bimodal pore systems were prepared in a two-step synthesis in which the triflic acid (Tf) was incorporated to previously synthesized mesoporous tin-containing silicas. The Sn incorporation inside the pore walls was carried out through the Atrane method. The SnTf-UVM-7 catalysts were prepared by aggregating nanometric mesoporous particles defining a hierarchic textural-type additional pore system. Following these procedures, catalysts with different Si/Sn ratios—21.8 to 50.8 for SnTf-MCM-41 and 18.4 for SnTf-UVM-7—were prepared. These new materials were tested in the acylation of aromatic sulfonamides using…

Green chemistryAcylationchemistry.chemical_compoundAtranechemistryOrganic chemistryLewis acids and basesPhysical and Theoretical ChemistryMesoporous materialHeterogeneous catalysisTriflic acidCatalysisCatalysisJournal of Catalysis
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Atmospheric pressure plasma polymerisation of metalloporphyrins containing mesoporous membranes for gas sensing applications

2013

Abstract Metalloporphyrins are embedded in an organosilicon matrix by an easily up-scalable atmospheric pressure dielectric barrier discharge method. The integrity of the metalloporphyrins, followed by UV–visible spectroscopy, is successfully preserved and their aggregation prevented. The single molecule properties, rather than the bulk ones, are thus enhanced. Exposure to triethylamine, which reaches the metalloporphyrins through the pores of the organosilicon membrane, led to a shift in the absorption spectrum and confirms the gas sensing potential of such coatings.

HexamethyldisiloxaneMaterials scienceAbsorption spectroscopyAtmospheric pressureAtmospheric-pressure plasmaSurfaces and InterfacesGeneral ChemistryDielectric barrier dischargeCondensed Matter PhysicsSurfaces Coatings and Filmschemistry.chemical_compoundMembraneChemical engineeringchemistryMaterials ChemistryOrganic chemistryMesoporous materialOrganosiliconSurface and Coatings Technology
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