Search results for "Mesoporous Silica"

showing 10 items of 135 documents

2017

A hybrid bioinspired material with manganese(II) complexes grafted on the surface of a mesostructured porous silica is investigated. The Mn sites mimic the manganese-dependent dioxygenase (MndD), which is an enzyme that catalyses the oxidation of catechol derivatives. The metal complexes were introduced in the silica using a dinuclear complex [Mn2L2(Cl)2(μ-Cl)2] as a precursor with a clickable ligand N,N′-bis[(pyridin-2-yl)methyl]prop-2-yn-1-amine (L). Azide moieties covalently grafted on MCM-41 type mesoporous silica were utilised to anchor the manganese complex through Huisgen cycloaddition using CuBr(PPh3)3 as a catalyst. A second functional group – trimethylsilyl or pyridine—was grafted…

Trimethylsilyl010405 organic chemistryLigandGeneral Chemical Engineeringchemistry.chemical_elementGeneral ChemistryManganeseMesoporous silica010402 general chemistryPhotochemistryHeterogeneous catalysis01 natural sciences0104 chemical sciencesCatalysischemistry.chemical_compoundCatalytic oxidationchemistryPolymer chemistryAzideRSC Advances
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Emerging hierarchical porous silica-based nanomaterials as sorbents for the analytical determination of organic hazardous compounds

2022

Actualment, l'exposició humana a compostos orgànics perillosos s'ha convertit en una preocupació molt important. La presència de contaminants orgànics al medi ambient ha provocat l'aparició de noves normatives per tal de restringir o prohibir aquestes substàncies perilloses, i el desenvolupament de noves metodologies analítiques per a la seua determinació ha esdevingut un gran repte per a la química analítica actual. A més a més, a part del desenvolupament de noves tècniques instrumentals, l'anàlisi de matrius complexes requereix d’un pas de preconcentració i neteja, per al qual s’han proposat diversos materials nous com a alternatives als adsorbents clàssics. Entre ells, la sílice mesoporo…

UNESCO::QUÍMICA::Química inorgánicaorganic pollutantsfood analysismesoporous silica materialsenvironmental analysisUNESCO::QUÍMICA::Química analíticaclinical analysis:QUÍMICA::Química analítica [UNESCO]solid-phase extraction:QUÍMICA::Química inorgánica [UNESCO]sample treatment
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A new efficient, highly dispersed, Pd nanoparticulate silica supported catalyst synthesized from an organometallic precursor. Study of the homogeneou…

2018

[EN] A new Pd(0) catalyst supported on silica UVM-7 has been synthesized from the organometallic [Pd-2(mu-(C6H4) Pp(2))(2)(CH3CN)(4)](BF4)(2) precursor, characterized by the high dispersion, activity, and small size of the palladium nanoclusters fixed on the silica surface. The catalyst was tested for the Suzuki-Miyaura (SM) reaction of different 4-substitutedphenyl halides with phenylboronic acid. The kinetic study concurs with most of the catalytic action was carried out by Pd species originated by the partial solubilization of Pd immobilized on mesoporous silica. The Schmidt's analysis of differential selectivity (SADS) in several competitive SM reactions, together the STEM-HAADF and HRT…

UVM-7 silicaHeterogeneous homogeneous catalysischemistry.chemical_element010402 general chemistryHeterogeneous catalysisHRTEM XRD01 natural sciencesCatalysisNanoclustersCatalysisSuzuki-Miyaurachemistry.chemical_compoundPhysical and Theoretical ChemistryPhenylboronic acidHigh-resolution transmission electron microscopySTEM-HAADF010405 organic chemistryQUIMICA INORGANICAMesoporous silicaPalladium nanoparticles0104 chemical sciencesKinetic studychemistryChemical engineeringSelectivityPalladiumJournal of Catalysis
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Multilayered supported ionic liquids as catalysts for chemical fixation of carbon dioxide

2011

Multilayered, covalently supported ionic liquid phase (mlc-SILP) materials were synthesized by using a new approach based on the grafting of bis-vinylimidazolium salts on different types of silica or polymeric supports. The obtained materials were characterized and tested as catalysts in the reaction of supercritical carbon dioxide with various epoxides to produce cyclic carbonates. The material prepared by supporting a bromide bis-imidazolium salt on the ordered mesoporous silica SBA-15 was identified as the most active catalyst for the synthesis of cyclic carbonates and displayed improved productivity compared with known supported ionic liquid catalysts. The catalyst retained its high act…

Vinyl CompoundsMaterials scienceGeneral Chemical EngineeringCatalyst supportIndustrial catalystsInorganic chemistryCarbonatesIonic LiquidsHeterogeneous catalysisCatalysisCatalysischemistry.chemical_compoundsupercritical carbon dioxideEnvironmental ChemistryGeneral Materials ScienceSupported ionic liquidSupercritical carbon dioxidecarbonate synthesiImidazolesSettore CHIM/06 - Chimica OrganicaCarbon DioxideMesoporous silicaSupercritical fluidGeneral EnergychemistryIonic liquidEpoxy CompoundsChemSusChem
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Multi-layered, covalently supported ionic liquid phase (mlc-SILP) as highly cross-linked support for recyclable palladium catalysts for the suzuki re…

2011

The reaction between an excess of 1,4-bis(3-vinylimidazolium-1-yl) bromide and a mercaptopropyl-modified amorphous silica gel or ordered mesoporous silica SBA-15 in the presence of azobisisobutyronitrile (AIBN) afforded new materials, which have a high loading of imidazolium moieties. These materials, which contain a highly cross-linked polymeric network, have been denoted as multi-layered, covalently supported ionic liquid phase (mlc-SILP) and have been used as support for palladium catalysts containing a high loading of the metal (10 wt%). Such materials were characterized by several techniques (13C magic angle spinning nuclear magnetic resonance, the Brunauer–Emmett–Teller technique, sma…

catalyst recyclingInorganic chemistryAzobisisobutyronitrilechemistry.chemical_elementGeneral ChemistrySettore CHIM/06 - Chimica OrganicaMesoporous silicapalladiumCatalysisBiphenyl compoundchemistry.chemical_compoundSuzuki reactionchemistryIonic liquidMagic angle spinningPalladiumionic liquidAdvanced Synthesis and Catalysis
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Mesoporous silica-based materials for use in electrochemical enzyme nanobiosensors

2012

Abstract Biology and medicine have seen great advancements in the development of enzyme nanobiosensors capable of characterizing and quantifying biomolecules. We provide an overview of mesoporous silica (MPS)-based enzyme nanobiosensors developed for biological and medical applications, and we describe significant advances in these technologies. We review progress in constructing high-performance electrochemical enzyme biosensors. We also discuss: • MCM-41 and SBA-15-modified and MPS composite electrodes for enzyme biosensing; • incorporation of biorecognition elements into MPS material electrodes for enzyme biosensing; and, • MCM-41 and SBA-15-supported electrocatalytic MPS-based electroch…

chemistry.chemical_classificationEnzymeChemistryComposite electrodeBiomoleculeNanotechnologyMesoporous silicaElectrochemistryBiosensorSpectroscopyAnalytical ChemistryTrAC Trends in Analytical Chemistry
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Enzyme-Responsive Controlled Release Using Mesoporous Silica Supports Capped with Lactose

2009

chemistry.chemical_classificationLactose metabolismHydrolysisLactoseGeneral ChemistryGeneral MedicineMesoporous silicaSilicon DioxideControlled releaseCatalysisGalactosidasesHydrolysischemistry.chemical_compoundEnzymechemistryX-Ray DiffractionOrganic chemistryRuthenium CompoundsLactoseAngewandte Chemie
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2019

Abstract The preparation method of a polymer composite and the filler loading are amongst the factors that influence the properties of the final composites. This article studies the effect of these factors on the thermal stability and thermal degradation kinetics of poly(methyl methacrylate) (PMMA)/mesoporous silica (MCM-41) composites filled with small amounts of MCM-41. The PMMA/MCM-41 composites were prepared through in situ polymerisation and melt mixing methods, with MCM-41 loadings of 0.1, 0.3, and 0.5 wt.%. The presence of MCM-41 increased the thermal stability of PMMA/MCM-41 composites prepared by melt mixing, but in the case of the in situ polymerised samples, the MCM-41 accelerate…

chemistry.chemical_classificationMaterials scienceRenewable Energy Sustainability and the EnvironmentSmall-angle X-ray scattering02 engineering and technologyPolymerActivation energyMesoporous silica010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesPoly(methyl methacrylate)0104 chemical sciencesBiomaterialschemistry.chemical_compoundPolymerizationchemistryvisual_artCeramics and Compositesvisual_art.visual_art_mediumThermal stabilityMethyl methacrylateComposite material0210 nano-technologyWaste Management and DisposalEmergent Materials
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Mesoporous silica-based materials for use in biosensors

2012

Abstract There have been great advancements in the development of biosensors capable of characterizing and quantifying biomolecules. This article gives an overview of the formation, the properties and the electrochemical applications of ordered mesoporous silica-based materials in electrocatalysis, electrosorption, matrix immobilization, construction of systems for controlled release of active compounds, sensors, biosensors and immunosensors. We also present a comprehensive overview of current developments and key issues in the determination of some biological molecules with particular emphasis on the evaluation of models.

chemistry.chemical_classificationMaterials sciencechemistryBiomoleculeNanotechnologyMesoporous silicaKey issuesBiosensorSpectroscopyAnalytical ChemistryTrAC Trends in Analytical Chemistry
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Mesoporous silica materials for use in electrochemical immunosensing

2013

Abstract Silica-based electrochemical immunosensors recently gained much importance for detecting antigens and biomarkers responsible for cancer diagnosis. This review describes fabrication and chemical modification of the surfaces of mesoporous silica materials for biomedical and immunosensing applications. We also present a comprehensive overview of current developments and key issues in the determination of some biological molecules with particular emphasis on evaluating the models.

chemistry.chemical_classificationMaterials sciencechemistryBiomoleculeNanotechnologyMesoporous silicaKey issuesElectrochemistrySpectroscopyAnalytical ChemistryTrAC Trends in Analytical Chemistry
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