Search results for "Electron Microscopy Service of the UPV"

showing 10 items of 11 documents

Estudio Arqueométrico de Maravedís de Felipe IV (1660-1664)

2018

"La presente investigación está fnanciada con el proyecto I+D: “Aplicación de las técnicas nanoelectroquímicas y biotecnologías en el estudio y conservación del CTQ2014-53736-C3 cofnanciado con fondos FEDER adscrito al Programa estatal de fomento de la investigación científca y técnica de excelencia, subprograma estatal de generación del conocimiento, MINECO (2015-2017). Los autores agradecen la colaboración de Dr. José Luis Moya y Manuel Planes, técnicos responsables del Servicio de Microscopía Electrónica de la Universitat Politècnica de València y a Manuel Gozalbes, conservador del Museu de Prehistòria de Valènciapatrimonio en metal” Referencia:"

ArcheologyUNESCO::HISTORIAmedia_common.quotation_subjectArtElectron Microscopy Service of the UPVCobreArqueometríaPINTURACONSERVACION Y RESTAURACION DE BIENES CULTURALES (UPV)Maravedís:HISTORIA [UNESCO]Humanitiesmedia_common
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Characterization of prehispanic cosmetics found in a burial of the ancient city of Teotihuacan (Mexico)

2012

The present paper reports the chemical data obtained on samples of pigmenting materials contained in 31 miniature vessels found in a burial found in Teopancazco, a multiethnic neighborhood center located in the southeastern sector of the archaeological site of Teotihuacan (Central Mexico) and the analytical protocol established for the complete characterization of these archaeological materials. For this purpose a multi-technique approach based on the combination of several non destructive and micro-destructive instrumental techniques, namely, light microscopy (LM), scanning electron microscopy-X-ray micro-analysis (SEMe EDX), transmission electron microscopy (TEM), voltammetry of micropart…

XRD/ m XRDArcheologyMesoamericaVoltammetry of microparticlesEnergy-dispersive X-ray spectroscopyPyroclastic rockengineering.materialElectron Microscopy Service of the UPVMicroanalysisGalenaTeotihuacanJarositeCosmeticLight microscopySEM e EDXArchaeologyGC e MSCharacterization (materials science)FTIR spectroscopyPINTURATEMUV e Vis spectrophotometryengineeringMicaGeologyJournal of Archaeological Science
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Non-oxidative dehydroaromatization of methane:an effective reaction regeneration cyclic operation for catalyst life extension

2015

[EN] Non-oxidative methane aromatization is an attractive direct route for producing higher hydrocarbons. It is highly selective to benzene despite the low conversion due to thermodynamic limitations, and Mo/H-ZSM-5, the first catalyst proposed for this reaction, is still considered as one of the most adequate. The major problem of this process is the severe catalyst deactivation due to the rapid build-up of carbonaceous deposits on the catalysts. Here we present an effective regeneration procedure that extends the life of Mo/zeolite based catalysts by combining reaction periods of 1.5 h with 0.5 h regeneration steps in a continuous cyclic mode and methane activation after each regeneration…

Inorganic chemistryAromatizationDeactivationCatalyst life extensionNon oxidativeHighly selective7. Clean energyElectron Microscopy Service of the UPVCatalysisMethaneCatalysischemistry.chemical_compoundchemistryZeolitesMethane aromatizationBenzeneZeoliteSelectivityReaction-regeneration cyclesMo/zeolites
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Stability of different mesoporous silica particles during an in vitro digestion

2016

Mesoporous silica materials have the ability to entrap drugs, nutrients and functional biomolecules and can be able to act as smart delivery systems capable to control and target the release of their cargo in a particular part of the gastrointestinal tract when administrated orally. However, the aptness of these encapsulation supports in in vivo oral controlled release relies on their chemical stability through the digestive tube. In this context, we have evaluated the stability of four different mesoporous silica particles, frequently used as encapsulating supports, during an in vitro digestion process comprising buccal, stomach and intestinal phases. Results showed that after 4 h of diges…

INGENIERIA DE LA CONSTRUCCIONTECNOLOGIA DE ALIMENTOSNanoparticle02 engineering and technology010402 general chemistryElectron Microscopy Service of the UPV01 natural sciencesMesoporous silica particlesQUIMICA ORGANICAQUIMICA ANALITICAOrganic chemistryMoietyGeneral Materials ScienceAmine-functionalizationchemistry.chemical_classificationChemistryBiomoleculeQUIMICA INORGANICAIn vitro digestionGeneral ChemistryBuccal administrationMesoporous silica021001 nanoscience & nanotechnologyCondensed Matter PhysicsControlled release0104 chemical sciencesChemical engineeringMechanics of MaterialsSurface modificationChemical stability0210 nano-technologyStabilityMicroporous and Mesoporous Materials
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Ultrastructural and histochemical analysis reveals ethylene-induced responses underlying reduced peel collapse in detached citrus fruit

2010

Fruits from many citrus cultivars develop depressed areas in the flavedo (outer part of the peel) and albedo (inner part) following detachment. Although ultrastructural analysis may provide important information about multiple plant responses to stresses and external stimuli at the cell and tissue levels, and despite the proved efficacy of ethylene in reducing peel damage in citrus fruit, cytological responses of this horticultural crop to protective ethylene concentrations have not yet been reported. We show that applying high ethylene levels (2 mu L L(-1) for 14 days) causes sublethal stress as it favored the alteration of cuticle, vacuole, middle lamella and primary wall, especially in t…

CyclopropanesCitrusHistologyEthylenefood.ingredientPectinStarchCuticleBOTANICAVacuoleBiologyPolysaccharideElectron Microscopy Service of the UPVchemistry.chemical_compoundfoodMicroscopy Electron TransmissionPolysaccharidesBotanyInstrumentationMiddle lamellachemistry.chemical_classificationBIOLOGIA VEGETALfood and beveragesStarchEthylenesCell ultrastructurePectinMedical Laboratory TechnologyHorticulturechemistryFruitPeel damageUltrastructureAnatomyCross-protection
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Electrochemical identification of painters/workshops: The case of Valencian Renaissance-Baroque painters (ca. 1550- ca. 1670)

2019

[EN] The voltammetry of immobilized particles (VIMP) methodology was applied to discriminate the oil painting production of a series of seven painters/workshops that worked in Valencia (Spain) between ca. 1530 and ca. 1650. When submicrosamples used for cross-section FESEM/EDX analysis were attached to graphite electrodes in contact with aqueous acetate buffer, well-defined responses were obtained. The reductive processes of lead pigments (lead white and lead-tin yellow) overlapped those associated to the lead soaps and other species resulting from the pigment-oil binder interaction in the sample. Such responses, which are theoretically modeled, were sensitive to changes in paint type and d…

Lead soapsPaintingAuthorship discriminationGeneral Chemical Engineeringmedia_common.quotation_subjectLead pigmentsThe Renaissance02 engineering and technologyArt010402 general chemistry021001 nanoscience & nanotechnologyElectron Microscopy Service of the UPV01 natural sciencesValencianlanguage.human_language0104 chemical sciencesBaroquePINTURAOil paintingElectrochemistrylanguage0210 nano-technologyHumanitiesmedia_commonElectrochimica Acta
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Amidase-responsive controlled release of antitumoral drug into intracellular media using gluconamide-capped mesoporous silica nanoparticles

2012

MCM-41 silica nanoparticles were used as inorganic scaffolding to prepare a nanoscopic-capped hybrid material S1, which was able to release an entrapped cargo in the presence of certain enzymes, whereas in the absence of enzymes, a zero release system was obtained. S1 was prepared by loading nanoparticles with Safranine O dye and was then capped with a gluconamide derivative. In the absence of enzymes, the release of the dye from the aqueous suspensions of S1 was inhibited as a result of the steric hindrance imposed by the bulky gluconamide derivative, the polymerized gluconamide layer and the formation of a dense hydrogen-bonded network around the pore outlets. Upon the addition of amidase…

INGENIERIA DE LA CONSTRUCCIONMaterials scienceCell SurvivalNanoparticleAntineoplastic AgentsElectron Microscopy Service of the UPVGluconatesAmidaseAmidohydrolasesHydrolysisQUIMICA ORGANICAEnzymatic hydrolysisPeptide bondOrganic chemistryHumansGeneral Materials ScienceDrug effectsMicroscopy ConfocalQUIMICA INORGANICAHydrogen BondingMesoporous silicaSilicon DioxideControlled releaseCombinatorial chemistryMCF-7 CellsNanoparticlesCamptothecinHybrid materialLysosomesPorosityHeLa Cells
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Encapsulation of folic acid in different silica porous supports: A comparative study.

2016

Although folic acid is essential to numerous bodily functions, recent research indicates that a massive exposition to the vitamin could be a double-edged sword. In this study, the capacity of different caped mesoporous silica particles (i.e. Hollow Silica Shells, MCM-41, SBA-15 and UVM-7) to dose FA during its passage through the gastrointestinal tract has been evaluated. Results confirmed that the four capped materials were capable to hinder the delivery of FA at low pH (i.e. stomach) as well as able to deliver great amounts of the vitamin at neutral pH (i.e. intestine). Nevertheless, the encapsulation efficiency and the deliver kinetics differed among supports. While supports with large p…

OptimizationVitaminPorous silica supportsSmart deliveryINGENIERIA DE LA CONSTRUCCIONFolic acidTECNOLOGIA DE ALIMENTOSSilicon dioxideKinetics02 engineering and technology010402 general chemistryElectron Microscopy Service of the UPV01 natural sciencesAnalytical Chemistrychemistry.chemical_compoundQUIMICA ORGANICAFolic AcidNeutral phPorosityNutritionChemistryQUIMICA INORGANICAGeneral MedicineMesoporous silica021001 nanoscience & nanotechnologySilicon Dioxide0104 chemical sciencesLarge poreNutrition AssessmentBiochemistryChemical engineeringFolic acid0210 nano-technologyPorosityFood ScienceFood chemistry
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Fluorogenic Sensing of Carcinogenic Bisphenol A using Aptamer-Capped Mesoporous Silica Nanoparticles

2017

[EN] Mesoporous silica nanoparticles loaded with rhodamine B and capped with a bisphenol A aptamer were used for the selective and sensitive detection of this lethal chemical. The pores of the nanoparticles are selectively opened in the presence of bisphenol A (through its selective coordination with the aptamer) with subsequent rhodamine B delivery. With this capped material a limit of detection as low as 3.5 mu m of bisphenol A was measured.

INGENIERIA DE LA CONSTRUCCIONendocrine systemBisphenol AAptamerMesoporous silica nanoparticlesAptamerNanoparticle02 engineering and technology010402 general chemistryElectron Microscopy Service of the UPV01 natural sciencesCatalysischemistry.chemical_compoundQUIMICA ORGANICAQUIMICA ANALITICARhodamine BOrganic chemistryreproductive and urinary physiologyCarcinogenDetection limiturogenital systemGated nanomaterialsQUIMICA INORGANICAOrganic ChemistryGeneral ChemistryMesoporous silica021001 nanoscience & nanotechnology0104 chemical sciencesBisphenol aFluorogenic sensingchemistry0210 nano-technologyhormones hormone substitutes and hormone antagonistsNuclear chemistryChemistry - A European Journal
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Epicuticular wax content and morphology as related to ethylene and storage perfomance of 'Navelate' orange fruit

2010

8 pages, 6 figures, 1 table. -- Available online 15 September 2009.

Non-chilling peel pittingEthyleneCuticleTurgor pressureWater and turgor potentialsBOTANICAOrange (colour)HorticulturePenicillium digitatumElectron Microscopy Service of the UPVEpicuticular waxchemistry.chemical_compoundEthyleneDiseaseBIOLOGIA VEGETALPenicillium digitatumWaxbiologyfood and beveragesEpicuticular waxbiology.organism_classificationOsmoticHorticulturechemistryCitrus fruit peel collapsevisual_artvisual_art.visual_art_mediumAgronomy and Crop ScienceCitrus × sinensisFood Science
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