Search results for "emulsion"

showing 10 items of 344 documents

Synthesis of Polymer Colloids Using Polymerizable Surfactants

2001

A series of new anionic surfactants were prepared by reacting a polymerizable alcohol with either maleic or succinic anhydride, as well as sulfosuccinic anhydride, resulting in either bireactive or monoreactive surfactants, either carboxylated or sulfonated. The synthesis presented and the critical micelle concentration (CMC) determined. These compounds were engaged in the emulsion polymerization of styrene in batch and also in semi-batch seeded copolymerization producing core-shell latexes. The core was a polystyrene seed prepared using sodium dodecyl sulfate (SDS), thoroughly purified through ion exchange resins. The seed was then swollen overnight with a small amount of a 1 : 1 mixture o…

Polymers and PlasticsChemistryOrganic ChemistrySuccinic anhydrideEmulsion polymerizationCondensed Matter PhysicsStyrenechemistry.chemical_compoundPulmonary surfactantCritical micelle concentrationPolymer chemistryMaterials ChemistryCopolymerPolystyrenePhysical and Theoretical ChemistrySodium dodecyl sulfateMacromolecular Chemistry and Physics
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An assembly of organic-inorganic composites using halloysite clay nanotubes

2018

Halloysite is natural tubular clay suitable as a component of biocompatible nanosystems with specific functionalities. The selective modification of halloysite inner/outer surfaces can be achieved by exploiting supramolecular and covalent interactions resulting in controlled colloidal stability adjusted to the solvent polarity. The functionalized halloysite nanotubes can be employed as reinforcing filler for polymers as well as carriers for the sustained release of active molecules, such as antioxidants, flame-retardants, corrosion inhibitors, biocides and drugs. The tubular morphology makes halloysite a perspective template for core-shell metal supports for mesoporous catalysts. The cataly…

Polymers and PlasticsHalloysite nanotube02 engineering and technologyReview01 natural sciencesunclassified drug adsorptionFlame retardantcovalent bondColloid and Surface ChemistryhalloysiteControlled drug deliverychemistry.chemical_classificationemulsionquantum dotSurfaces and InterfacesPolymerSelf assembly021001 nanoscience & nanotechnologynanorodPickering emulsionCorrosion inhibitoroil spillSolventSelective modification Kaolinite chemicals and drugNanorodBiocompatibility0210 nano-technologyOil water interfaceYarn Covalent interactionNanotubeMaterials scienceSupramolecular chemistrysustained drug releasecatalysiengineering.material010402 general chemistryHalloysitebioremediationPhysical and Theoretical ChemistryhydrophobicityMesoporous catalystpetroleummetal nanoparticlePhase interfacemetal bindingReinforcing fillerPickering emulsion0104 chemical sciencesOrganic-inorganic compositeNanotubeFilled polymerchemistryChemical engineeringengineeringSelf-assemblyCatalystMesoporous material
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HPMA copolymers as surfactants in the preparation of biocompatible nanoparticles for biomedical application.

2012

In this work we describe the application of amphiphilic N-(2-hydroxypropyl)methacrylamide (HPMA)-based copolymers as polymeric surfactants in miniemulsion techniques. HPMA-based copolymers with different ratios of HPMA (hydrophilic) to laurylmethacrylate (LMA; hydrophobic) units were synthesized by RAFT polymerization and postpolymerization modification. The amphiphilic polymers can act as detergents in both the miniemulsion polymerization of styrene and the miniemulsion process in combination with solvent evaporation, which was applied to polystyrene and polylactide. Under optimized conditions, monodisperse colloids can be prepared. The most promising results could be obtained by using the…

Polymers and PlasticsPolymersPolyestersDispersityBioengineeringBiocompatible MaterialsPolymerizationBiomaterialschemistry.chemical_compoundSurface-Active AgentsPolymer chemistryAmphiphileMaterials ChemistryCopolymerMethacrylamideHumansReversible addition−fragmentation chain-transfer polymerizationColloidsMicroscopy ConfocalChemistryMiniemulsionPolymerizationMethacrylatesNanoparticlesPolystyreneHydrophobic and Hydrophilic InteractionsHeLa CellsBiomacromolecules
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Encapsulation of aroma compounds in biopolymeric emulsion based edible films to control flavour release

2010

Abstract Flavour loss strongly affects food quality. In order to decrease flavour changes during food conservation, different strategies could be used. Aroma compound encapsulation allows the protection of food flavour from loss and degradative reactions, like oxidation. Edible films could be an encapsulation matrix: in the case of emulsified film, lipid globules incorporated can act as carriers of active molecules, such as aroma compounds. Edible films prepared from ι-carrageenans are interesting for good mechanical and gas barrier properties. The aim of this study was to encapsulate different aroma compounds in an ι-carrageenan emulsion based edible film. Release of ten aroma compounds wa…

Polymers and PlasticsbiologyCarrageenan; Methyl-ketones; AlcoholsOrganic ChemistryFlavourFood preservationfood and beveragesLipid matrixCarrageenanbiology.organism_classificationCarrageenanchemistry.chemical_compoundchemistryMethyl-ketonesAlcoholsEmulsionMaterials ChemistryOrganic chemistryAroma compoundFood qualityAromaCarbohydrate Polymers
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pH-responsive physically and chemically cross-linked glutamic-acid-based hydrogels and nanogels

2018

Abstract Given the great demand for polymers prepared from renewable materials, the synthesis of a glutamic-acid-based hydrogel by solution and inverse miniemulsion polymerization is herein presented. Free radical initiated homopolymerizations of N-acryloyl- l -glutamic acid (l- AGA) resulted in either a readily water-soluble polymer or a physically cross-linked hydrogel, being the formation of physical cross-linking junctions closely related to monomer concentration and mixture viscosity. Chemically cross-linked poly( l -AGA-co-BIS) hydrogels were also synthesized by copolymerization of l -AGA and N,N′-methylenebis(acrylamide) (BIS). Both poly (l- AGA) and poly( l -AGA-co-BIS) swelling beh…

Polymers and PlasticseducationGeneral Physics and AstronomyProtonation02 engineering and technology010402 general chemistry01 natural scienceschemistry.chemical_compoundPolymer chemistryMaterials ChemistryCopolymerreproductive and urinary physiologychemistry.chemical_classificationOrganic ChemistryPolymer021001 nanoscience & nanotechnologyfemale genital diseases and pregnancy complications0104 chemical sciencesbody regionsMiniemulsionMonomerchemistryPolymerizationSelf-healing hydrogelsNanocarriers0210 nano-technologyEuropean Polymer Journal
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Polymeric nanoparticles of different sizes overcome the cell membrane barrier.

2012

Abstract Polymeric nanoparticles have tremendous potential either as carriers or markers in treatment for diseases or as diagnostics in biomedical applications. Finding the optimal conditions for effective intracellular delivery of the payload to the location of interest is still a big challenge. The particles have to overcome the barrier of the cell membrane. Here, we investigated the uptake in HeLa cells of fluorescent polystyrene particles with different size and surface charge. Particles stabilized with the nonionic surfactant Lutensol AT50® (132 nm, 180 nm, 242 nm, 816 nm, 846 nm diameter) were synthesized via dispersion polymerization. Cationic particles (120 nm, 208 nm, 267 nm, 603 n…

PolymersAnalytical chemistryPharmaceutical ScienceNanoparticleSurface areaSurface-Active AgentsDrug Delivery SystemsPulmonary surfactantMicroscopy Electron TransmissionCationsHumansSurface chargeParticle SizeFluorescent DyesDispersion polymerizationMicroscopy ConfocalChemistryCell MembraneCationic polymerizationGeneral MedicineFlow CytometryEndocytosisMiniemulsionAlcoholsBiophysicsParticleNanoparticlesPolystyrenesBiotechnologyHeLa CellsEuropean journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V
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Biologically active properties of plant extracts in cosmetic emulsions

2020

Abstract Describes biologically active properties waters plant extracts of domestic herbaceous species as a part cosmetic emulsion in this article. In particular, the antioxidant features related to vitamins, flavonoids, coloring, extractive and tannins were reported. The following research methods as qualitative analysis on groups of biologically active substances, thin-layer chromatography, titrimetry and photometry were used in the work. The ability of extracts to influence the physico-chemical, organoleptic and antioxidant properties of cosmetic emulsion samples was established. The ability of the extracts to exhibit antioxidant and prooxidant effects in cosmetic emulsion samples was de…

PolyphenolAntioxidantChemistrymedicine.medical_treatmentBiologically active substance010401 analytical chemistryOrganolepticBiological activity02 engineering and technology021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesAnalytical ChemistryPlant extracts Polyphenols Biologically active substances Antioxidant activity Cosmetic emulsionPlant extractQualitative analysisAntioxidant activityPolyphenolEmulsionmedicineBiologically active substancesFood science0210 nano-technologySpectroscopyCosmetic emulsion
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Functional and bioactive properties of peptides derived from marine side streams

2021

In fish processing, a great amount of side streams, including skin, bones, heads and viscera, is wasted or downgraded as feed on a daily basis. These side streams are rich sources of bioactive nitrogenous compounds and protein, which can be converted into peptides through enzymatic hydrolysis as well as bacterial fermentation. Peptides are short or long chains of amino acids differing in structure and molecular weight. They can be considered as biologically active as they can contribute to physiological functions in organisms with applications in the food and pharmaceutical industries. In the food industry, such bioactive peptides can be used as preservatives or antioxidants to prevent food…

Preservative3309.03 Antioxidantes en Los AlimentosantioxidantDrug IndustryFood industry030309 nutrition & dieteticsFood spoilagePharmaceutical ScienceReviewAntioxidants03 medical and health sciencesIngredient0404 agricultural biotechnologyNutraceuticalRiversEnzymatic hydrolysisDrug DiscoveryAnimalsFood IndustryHumansFood scienceantihypertensivePharmacology Toxicology and Pharmaceutics (miscellaneous)lcsh:QH301-705.5Antihypertensive Agents3309.20 Propiedades de Los Alimentos2. Zero hungerchemistry.chemical_classificationnutraceuticals0303 health sciencesseafood side streamsfunctional propertiesbusiness.industryfungifood and beveragesBiological activity04 agricultural and veterinary sciences040401 food scienceAmino acidSeafoodSolubilitychemistrylcsh:Biology (General)Dietary SupplementsEmulsions2302.24 PéptidosPeptidesbusinessbioactive peptides
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A Study of the Separation of 1-Dodecene and 1-Tetradecene Hydroformylation Products in Aqueous Medium

2009

Abstract Experimental results of the solubilization of olefins in hydroformylation model systems, comprising 1-dodecene and 1-tridecanal or 1-tetradecene and 1-pentadecanal, water, butanol, sodium dodecylsulfate (SDS), sodium dodecylbenzenesulfonate (SDBS), and/or tri(m-sulfofenyl)phosphine trisodium salt (TPPTS-Na) are presented. The selected systems were used for the hydroformylation of 1-dodecene and 1-tetradecene whereby high yields of aldehydes were obtained. After the reaction, the mixture spontaneously separated into an organic phase with the reaction products and an aqueous phase comprising the catalyst and excess phosphine ligand.

Process Chemistry and TechnologyGeneral Chemical EngineeringButanolSodium dodecylbenzenesulfonateAqueous two-phase systemFiltration and SeparationGeneral ChemistryCatalysischemistry.chemical_compoundchemistryOrganic chemistry1-DodeceneMicroemulsionPhosphineHydroformylationSeparation Science and Technology
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Halloysite based geopolymers filled with wax microparticles as sustainable building materials with enhanced thermo-mechanical performances

2022

This work proposes a novel protocol for the fabrication of halloysite based geopolymers filled with beeswax microparticles obtained from Pickering emulsions. The actual filling of the microwax into the geopolymers has been demonstrated by using several techniques, including thermal analyses, spectroscopies, microscopies and contact angle experiments. According to the morphological and structural investigations, microwax spherical particles (diameter ranging between ca. 3 and 5 μm) have been homogeneously dispersed within the geopolymeric network conferring excellent properties to the hybrid geopolymers in terms of mechanical performances and heat storage capacity although their low content …

Process Chemistry and TechnologyPickering emulsion Beeswax Geopolymers Halloysite nanotubesChemical Engineering (miscellaneous)PollutionWaste Management and DisposalSettore CHIM/02 - Chimica Fisica
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