Search results for "Encapsulation"

showing 10 items of 92 documents

Sol–Gel Microcapsulation in Silica-Based Particles: A Comparative Study

2011

Comparison between the two main sol–gel/emulsion methods to prepare microparticles made of organosilica doped with a lipophilic molecule shows that entrapment only takes place starting from O/W emulsions. In this case, however, formation of spherical microcapsules, observed when the sol–gel polycondensation is carried out in a W/O microemulsion, does not take place.

Materials scienceCondensation polymerChemical engineeringEmulsionPolymer chemistryDopingMoleculeMicroemulsionmicroparticle sol-gel encapsulation emulsionMicroparticleElectronic Optical and Magnetic MaterialsSol-gelSilicon
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Spin-crossover complex encapsulation within a magnetic metal-organic framework.

2016

The solid-state incorporation of a mononuclear iron(III) complex within the pores of a magnetic 3D metal–organic framework (MOF) in a single crystal to single crystal process leads to the formation of a new hybrid material showing both a guest-dependent long-range magnetic ordering and a spin-crossover (SCO) behaviour.

Materials scienceMetals and AlloysPhysics::OpticsNanotechnology02 engineering and technologyGeneral Chemistry010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesCatalysis0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsEncapsulation (networking)Chemical engineeringSpin crossoverMaterials ChemistryCeramics and CompositesMetal-organic framework0210 nano-technologyHybrid materialSingle crystalChemical communications (Cambridge, England)
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Applications of spray-drying in microencapsulation of food ingredients: An overview

2007

International audience; Spray-drying process has been used for decades to encapsulate food ingredients such as flavors, lipids, and carotenoids. During this drying process, the evaporation of solvent, that is most often water, is rapid and the entrapment of the interest compound occurs quasi-instantaneously. This required property imposes a strict screening of the encapsulating materials to be used in addition to an optimization of the operating conditions. Likewise, if the encapsulated compound is of hydrophobic nature, the stability of the feed emulsion before drying should also be considered. Thus, spray-drying microencapsulation process must rather be considered as an art than a science…

Materials scienceProcess (engineering)business.industrySpray-dryingWall materialRequired propertyIngredientScientific methodMass transferSpray drying[SDV.IDA]Life Sciences [q-bio]/Food engineeringEmulsionFood applicationsWall materialCoreFood scienceMicroencapsulationProcess engineeringbusinessFood ScienceFood Research International
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Produzione di semi sintetici di Capparis spinosa (L.). Innovazione e tradizione

2011

The caper bush (Capparis spinosa L.) is a rupiculous species. It is widespread on rocky areas and it grows on different soil associations. Caper can be propagated from fresh seeds, gathered from ripe fruit, or by stem cuttings both methods with unsatisfying results, due to the low germination percentage and to the season-dependent answer of the cutting technique. The aim of the present research has been to evaluate the attitude, for caper in vitro propagules , to be encapsulated. Micro cuttings from in vitro plantlets, were dissected and put on two different Murashige and Skoog liquid media enriched with 4% sodium alginate and 1,4% di CaCl2 separately, for the encapsulation. The synthetic s…

Micropropagation encapsulation alginate conversion regrowth.Settore AGR/04 - Orticoltura E Floricoltura
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Subphthalocyanines: addressing water-solubility, nano-encapsulation, and activation for optical imaging of B16 melanoma cells

2014

Water-soluble disulfonato-subphthalocyanines (SubPcs) or hydrophobic nano-encapsulated SubPcs are efficient probes for the fluorescence imaging of cells. 20 nm large liposomes (TEM and DLS) incorporated about 13% SubPc. Moreover, some of these fluorophores were found to be pH activatable.

Models MolecularFluorescence-lifetime imaging microscopyNanostructureIndolesMelanoma ExperimentalIsoindoles010402 general chemistryPhotochemistryCrystallography X-Ray01 natural sciencesCatalysisMiceMaterials ChemistryMoleculeAnimals[CHIM]Chemical SciencesSolubilityFluorescent DyesLiposomeAqueous solutionMolecular Structure010405 organic chemistryChemistryMetals and AlloysWaterGeneral ChemistryHydrogen-Ion Concentration0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsMolecular ImagingNanostructuresNano encapsulationSolubilityLiposomesCeramics and CompositesMolecular imaging
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Microencapsulation of antioxidant compounds through innovative technologies and its specific application in meat processing

2018

Background Meat has a complex physical structure and chemical composition that is very prone to oxidation. Plants are sources of biologically active compounds (antioxidants) of interest as potential raw materials for meat processing, primary as replacements for synthetic additives. Some examples are essential oils from aromatic plants that are usually unstable under common processing and storage conditions and exhibit strong smell and off flavour. Hence, stable delivery systems like encapsulation are required. Scope and approach Encapsulation, and particularly spray-drying, offers protection of active compounds, their controlled and targeted release in food products and ability to mask unac…

Natural antioxidants ; Meat processing ; Encapsulation ; Wall materials ; Spray-drying ; NanotechnologyMeat packing industryOff-flavourComputer sciencebusiness.industrySpray-dryingAromatic plants04 agricultural and veterinary sciencesNatural antioxidantsRaw materialMeat processing040401 food scienceWall material0404 agricultural biotechnologyPhysical structureWall materialsFood productsNanotechnologyEncapsulationBiochemical engineeringbusinessTargeted releaseFood ScienceBiotechnology
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Polymer/Perovskite Amplifying Waveguides for Active Hybrid Silicon Photonics

2015

The emission properties of hybrid halide perovskites are exploited to implement a stable and very low power operation waveguide optical amplifier integrated in a silicon platform. By optimizing its design with a poly(methyl methacrylate) (PMMA) encapsulation, this novel photonic device presents a net gain of around 10 dB cm−1 and 3–4 nm linewidth with an energy threshold as low as 2 nJ pulse−1 and exhibiting no degradation after one year. This work was supported by Generalitat Valenciana (Project No. ISIC/2012/008), the Universitat Jaume I (Project No. 12I361.01/1), Spanish MINECO (Projects Nos. MAT2013-47192-C3-1-R and TEC2014-53727-C2-1-R) and EU-NAVOLCHI (Project No. 288869).

Optical amplifierHybrid halide perovskitesMaterials scienceSilicon photonicsSiliconbusiness.industryOperation waveguide optical amplifierMechanical Engineeringchemistry.chemical_elementNanotechnologyPoly(methyl methacrylate) (PMMA) encapsulationPhotonic devicelaw.inventionLaser linewidthchemistryMechanics of MaterialslawNet gainOptoelectronicsGeneral Materials SciencePhotonicsbusinessWaveguidePerovskite (structure)
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DC lifetime of encapsulated organic light emitting diodes

2016

Organic light emitting diodes (OLEDs) are ideal sources for chemical and biological optical sensors, due to their simplicity, low cost (disposable applications) and possibility to be integrated on chip and fabricated in the form of large 2D arrays (microarray fluorescence) even on flexible plastic substrates. OLEDs with lifetimes of a few hundreds of hours at initial luminance values in the range (500÷1000) cd/m 2 are suitable for the above applications, but these lifetimes can be achieved only by a proper encapsulation. Fast, simple and inexpensive encapsulation methods are highly desirable to keep the low cost profile and for this reasonwe report two different encapsulation structures and…

Organic Electronics Organic light emitting diodes (OLEDs) encapsulation lifetimeSettore ING-INF/01 - Elettronica
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A comparative study of encapsulation structures for OLEDs

2007

Encapsulation is the final and most important step in the fabrication of organic light emitting diodes (OLEDs). An OLED operated in air can have a lifetime, defined as the time it takes for the luminance to decrease to half of its initial value, up to a few hours or less [1] due to degradation mechanisms induced by water vapour and oxygen. For emerging niche applications, such as OLED fluorescence biosensors [2] for routine laboratory analysis, the OLED is operated for a short period of time and then it must be disposed of. In this case OLEDs lifetimes of the order of a few hundreds of hours at initial luminance values in the range (500 1000) cd/m2 can be considered acceptable. To keep th…

Organic Light Emitting Diodes (OLEDs) encapsulation methods sealant materialsSettore ING-INF/01 - Elettronica
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Molecular Encapsulation. Organic Reactions in Constrained Systems. Edited by Udo H. Brinker and Jean-Luc Miesset.

2011

Organic reaction010405 organic chemistryChemistryOrganic chemistryGeneral ChemistryMolecular encapsulation01 natural sciencesCatalysis0104 chemical sciencesAngewandte Chemie International Edition
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