Search results for " modifica"

showing 10 items of 817 documents

1994

The synthesis of linear carbohydrate modified polysiloxanes has been successfully performed by hydrosilation of functionalized and protected carbohydrate derivates. The functionalization (allyl glycosilation) may be applied to a wide variety of reducing carbohydrates. In this study, mono-, di- and oligosaccharides were converted by a simple two-step reaction (β-acetylation and allyl glycosilation) into active compounds, allowing the polymer analogous addition to random poly[dimethyl-co-hydromethyl]siloxanes (hydrosilation). By variation of the Si–H amount in the starting polymers, polysiloxanes with 1.5% to 56% (by weight) carbohydrate content were prepared. At small degrees of substitution…

chemistry.chemical_classificationAqueous solutionPolymers and PlasticsChemistryHydrosilylationGeneral Chemical EngineeringDisaccharideChemical modificationPolymerOligosaccharideCarbohydratechemistry.chemical_compoundPolymer chemistryOrganic chemistryMethanolActa Polymerica
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On the origin of functionalization in one-pot radiation synthesis of nanogels from aqueous polymer solutions

2016

Radiation-engineered poly(N-vinyl pyrrolidone) nanogels are very interesting biocompatible nanocarriers for i.v. administration of therapeutics and contrast agents for bioimaging. The manufacturing process is fast and effective, it grants excellent control of particle size and simultaneous sterilization of the formed nanogels. Interestingly, primary amino groups and carboxyl groups, useful for (bio)conjugation, are also formed in a dose-dependent fashion. In this paper, by means of both numerical simulations and experiments, the origin of nanogel size control and functionalization is investigated. This understanding offers a new dimension for the design and production of radiation-sculpture…

chemistry.chemical_classificationAqueous solutionirradiationManufacturing processGeneral Chemical EngineeringNanotechnology02 engineering and technologyGeneral ChemistryPolymerradiation-sculptured multifunctional nanocarriers from aqueous solutions of polymers010402 general chemistry021001 nanoscience & nanotechnologyBiocompatible material01 natural sciences0104 chemical scienceschemistrySurface modificationSettore CHIM/07 - Fondamenti Chimici Delle TecnologieParticle sizeNanocarriers0210 nano-technologyhydrogelsNanogel
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Selective Surface Modification of SiO2−TiO2 Supports with Phosphonic Acids

2004

The selective surface modification by phosphonic acids of SiO2−TiO2 supports at the micrometer and molecular scale was investigated. Under aqueous conditions, phosphonic acids bind to TiO2 and not to SiO2 surfaces. A micropatterned support was prepared by electron beam microlithography and selectivity, of the surface modification was evidenced using scanning Auger electron spectroscopy (SAES). The second support was a mesoporous SiO2−TiO2 mixed oxide (10 mol % Ti) epoxidation catalyst prepared by sol−gel processing. Selectivity was deduced from the decrease of the catalytic activity upon modification and from chemical analysis; bonding modes to the surface were investigated using solid-stat…

chemistry.chemical_classificationAuger electron spectroscopyAqueous solutionGeneral Chemical EngineeringInorganic chemistryGeneral ChemistryPolymerCatalysischemistryMaterials ChemistrySurface modificationMixed oxideSelectivityMesoporous materialChemistry of Materials
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ChemInform Abstract: Carbohydrate Nanocarriers in Biomedical Applications: Functionalization and Construction

2015

The specific targeting of either tumor cells or immune cells in vivo by carefully designed and appropriately surface-functionalized nanocarriers may become an effective therapeutic treatment for a variety of diseases. Carbohydrates, which are prominent biomolecules, have shown their outstanding ability in balancing the biocompatibility, stability, biodegradability, and functionality of nanocarriers. The recent applications of sugar (mono/oligosaccharides and/or polysaccharides) for the development of nanomedicines are summarized in this review, including the application of carbohydrates for the surface-functionalization of various nanocarriers and for the construction of the nanocarrier its…

chemistry.chemical_classificationBiocompatibilitychemistryBiomoleculeTherapeutic treatmentSurface modificationNanotechnologyTumor cellsGeneral MedicineNanocarriersChemInform
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Aminofunctional polyethers: smart materials for applications in solution and on surfaces

2013

In recent years, biocompatible polyethers with multi-aminofunctionality have been used for a variety of applications in different fields. Both established and recently developed synthesis strategies for such polymers and applications as stimuli-responsive materials, non-viral vectors, shell crosslinked micelles and for surface functionalization are reviewed. The intriguing potential of such materials is due to both polyether and polyamine components and can thus be readily tuned by the copolymer microstructure and composition. © 2013 Society of Chemical Industry

chemistry.chemical_classificationBiocompatible polymersMaterials sciencePolymers and PlasticsOrganic ChemistryNanotechnologyPolymerMicrostructureSmart materialBiocompatible materialMicellechemistryMaterials ChemistryCopolymerOrganic chemistrySurface modificationPolymer International
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Cell Adhesive and Antifouling Polyvinyl Chloride Surfaces Via Wet Chemical Modification

2012

Polyvinyl chloride (PVC) is one of the most frequently used polymers for the manufacturing of medical devices. Limitations for its usage are based upon unfavorable surface properties of the polymer including its hydrophobicity and lack of functionalities in order to increase its versatility. To address this issue, wet chemical modification of PVC was performed through surface amination using the bifunctional compound ethylene diamine. The reaction was conducted in order to achieve maximum surface amination while leaving the bulk material unaffected. The initial activation step was characterized by means of various methods including contact angle measurements, colorimetric amine quantificati…

chemistry.chemical_classificationBiomedical EngineeringMedicine (miscellaneous)Chemical modificationBioengineeringGeneral MedicinePolymerBiomaterialsContact angleGel permeation chromatographyPolyvinyl chloridechemistry.chemical_compoundchemistryChemical engineeringPolymer chemistrySurface modificationAdhesiveWettingArtificial Organs
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Methacrylate monolithic columns functionalized with epinephrine for capillary electrochromatography applications.

2013

Epinephrine-bonded polymeric monoliths for capillary electrochromatography (CEC) were developed by nucleophilic substitution reaction of epoxide groups of poly(glycidyl-methacrylate-co-ethylenedimethacrylate) (poly(GMA-co-EDMA)) monoliths using epinephrine as nucleophilic reagent. The ring opening reaction under dynamic conditions was optimized. Successful chemical modification of the monolith surface was ascertained by in situ Raman spectroscopy characterization. In addition, the amount of epinephrine groups that was bound to the monolith surface was evaluated by oxidation of the catechol groups with Ce(IV), followed by spectrophotometric measurement of unreacted Ce(IV). About 9% of all th…

chemistry.chemical_classificationCapillary electrochromatographygeographygeography.geographical_feature_categoryChromatographyEpinephrineOrganic ChemistryEpoxideChemical modificationGeneral MedicineBiochemistryAnalytical Chemistrychemistry.chemical_compoundchemistryCapillary ElectrochromatographyReagentNucleophilic substitutionSurface modificationMethacrylatesMonolithAlkylJournal of chromatography. A
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High performance PA6/CNTs nanohybrid fibers prepared in the melt

2012

Commercial and home-made carbon nanotubes (CNTs) were plasma treated under oxygen atmosphere and then added to polyamide 6 (PA6) in order to prepare fibres by melt spinning. For comparison, pristine nanofillers were used too. The effect of functionalization and of filler characteristics on the morphological, rheological, mechanical and electrical properties of the fibres was studied by TEM and SEM, rheological measurements, tensile and electrical conductivity tests. The results demonstrated that the functionalization led to a better mechanical performance and the morphological analysis confirmed that the adhesion, the dispersion and the alignment of the nanotubes within the polymer matrix w…

chemistry.chemical_classificationCarbon nanotubes; Electrical properties; Elastic properties; Raman spectroscopy; Melt-spinningElectrical propertieMaterials scienceElastic propertieGeneral EngineeringMechanical properties of carbon nanotubesPolymerCarbon nanotubeConductivityMelt-spinningCarbon nanotubelaw.inventionchemistrylawRaman spectroscopyPolyamideUltimate tensile strengthCeramics and CompositesSurface modificationComposite materialMelt spinningComposites Science and Technology
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Functionalization of TiO2Nanoparticles with Semiconducting Polymers Containing a Photocleavable Anchor Group and Separation via Irradiation Afterward

2014

The controlled radical polymerization (RAFT polymerization) of semiconducting polymers based on poly(4,4′-dimethyl-triphenylamine) is described. These polymers are afterward end-functionalized with a photocleavable group and an anchor unit (catechol) for oxidic nanoparticles (NPs). Serving as a reference, polystyrene oligomers with the same end groups are also synthesized. Using these polymers allows functionalization of the TiO2-NPs, leading to an improved solubility and miscibility in organic solvents or polymer matrices. Irradiation in the UV region is used to split the photocleavable group and remove the polymer chains from the NPs, which leads to their aggregation.

chemistry.chemical_classificationCatecholPolymers and PlasticsOrganic ChemistryRadical polymerizationtechnology industry and agricultureNanoparticlePolymerCondensed Matter PhysicsMiscibilitychemistry.chemical_compoundchemistryPolymer chemistryMaterials ChemistrySurface modificationReversible addition−fragmentation chain-transfer polymerizationPolystyrenePhysical and Theoretical ChemistryMacromolecular Chemistry and Physics
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Diamondoids: functionalization and subsequent applications of perfectly defined molecular cage hydrocarbons

2014

The term “diamondoid” describes cage hydrocarbon molecules that are superimposable on the diamond lattice. Diamondoids that are formally built by face-fusing of adamantane units, namely diamantane, triamantane, tetramantane, etc., have fascinated chemists since the beginning of the last century. The functionalization of these perfectly defined (C,H)-molecules is described here. Thus, diamondoid halides and diamondoid alcohols are first rank precursors for amino and phosphine-substituted diamondoids that have proved to be highly useful in therapeutic applications and metal catalysis, respectively. The extent of functionalization and polyfunctionalization achieved for adamantane and diamantan…

chemistry.chemical_classificationChemistryAdamantaneMolecular electronicsGeneral ChemistryPolymerDiamondoidCatalysischemistry.chemical_compoundComputational chemistryOrganocatalysisMaterials ChemistrySurface modificationMoleculeOrganic chemistryDiamantaneNew J. Chem.
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