Search results for "absorptio"

showing 10 items of 2815 documents

Effect of Pre-Reduction on the Properties and the Catalytic Activity of Pd/Carbon Catalysts: A Comparison with Pd/Al2O3

2013

The effect of pre-reduction in solution with chemical reagents on the catalytic performance and catalyst properties of Pd/carbon catalysts was systematically investigated with a multitechnique approach. The results are critically discussed in comparison to those recently obtained on analogous Pd/alumina catalysts. It was proved that the Pd phase on the carbon surface is characterized by a high mobility, opposite to what occurs on alumina. As a result, the Pd particles on carbon aggregate together during pre-reduction, with a consequent decrease in available metal surface. Pd particles remain aggregated also in reaction conditions; the decreased Pd dispersion negatively affects the catalyst …

characterization techniqueCO chemisorptionInorganic chemistryPd-based catalystchemistry.chemical_elementTPRHeterogeneous catalysisPd/CarbonCatalysisCatalysisMetalCharacterization techniquesCatalyst pre-reductionTemperature-programmed reductionX-ray absorption spectroscopymetal nanoparticlein situPd-based catalystsPd/aluminaSAXSGeneral ChemistryXANESSmall Angle X-ray ScatteringX-ray Absorption SpectroscopyPd/Carbon; Pd/alumina; metal nanoparticle; catalysis; Catalyst pre-reduction; in situ; SAXS; XANES; Pd-based catalysts; heterogeneous catalysis; Characterization techniques; Temperature-programmed reduction; TPR; CO chemisorption; TEM; X-ray absorption spectroscopy; Small Angle X-ray Scatteringheterogeneous catalysischemistryReagentvisual_arttemperature-programmed reductionvisual_art.visual_art_mediumTEMheterogeneous catalysiSmall Angle X-ray SpectroscopyDispersion (chemistry)Carbon
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Dialysability of Calcium, Iron, and Zinc in Beans, Chick Peas, and Lentils

2002

chemistrylawchemistry.chemical_elementZincCalciumAtomic absorption spectroscopyNuclear chemistrylaw.invention
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Human artificial membranes in (bio)analytical science: Potential for in vitro prediction of intestinal absorption-A review

2021

Abstract Artificial membranes for investigation of the human absorption (oral, dermal or respiratory) of target organic compounds are aimed at mimicking the interactions occurring at and within the cell lipid membrane. Biomolecules such as proteins are also integral components of the lipid membranes and play a pivotal role towards understanding the complex mechanisms of human absorption. In this review, we will differentiate biomimetic platforms based on static (batchwise) and dynamic modes. In the former, a synthetic membrane placed between two phases (donor and acceptor) mimics a given biological system to study permeability. Parallel artificial membrane permeation assays are the most com…

chemistry.chemical_classificationAbsorption (pharmacology)BioanalysisMembraneChemistryBiomoleculeSynthetic membraneNanotechnologyPermeationLipid bilayerSpectroscopyIntestinal absorptionAnalytical ChemistryTrAC Trends in Analytical Chemistry
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Mucoadhesive Polymer Hyaluronan as Biodegradable Cationic/Zwitterionic-Drug Delivery Vehicle

2014

Mucoadhesive polymers in pharmaceutical formulations release drugs in mucosal areas. They interact and fix to mucus via molecular interpenetration, etc ., which increase drug bioavailability. Polymers physicochemical properties affect formulation mucoadhesion, rheological behaviour and drug absorption. Hyaluronan (HA) is selected as a mucoadhesive and biodegradable polymer. Geometric, topological and fractal analyses are carried out with program TOPO. Reference calculations are performed with algorithm GEPOL. Procedure TOPO underestimates molecular volume by 0.7%. Error results 5% in surface area and derived topological indices. Solvent-accessible surface is undercalculated by 3%: from hexa…

chemistry.chemical_classificationAbsorption (pharmacology)Chemistrylcsh:RM1-950Cationic polymerizationMedicine (miscellaneous)NanotechnologyPolymerBiodegradable polymerBioavailabilitymedicine absorption; medicine delivery; dipole moment; fractal dimension; metal hyaluronate; mucosalcsh:Therapeutics. PharmacologyChemistry (miscellaneous)Drug deliveryMucoadhesionPharmacology (medical)General Pharmacology Toxicology and PharmaceuticsHydrateNuclear chemistryADMET and DMPK
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PAMPA—a drug absorption in vitro model

2004

Parallel artificial membrane permeability assay (PAMPA) was used to measure the effective permeability, P(e), as a function of pH from 4 to 10, of 17 fluoroquinolones, including three congeneric series with systematically varied alkyl chain length at the 4'N-position of the piperazine residue. The permeability values spanned over three orders of magnitude. The intrinsic permeability, P(o), and the membrane permeability, P(m), were determined from the pH dependence of the effective permeability. The pK(a) values were determined potentiometrically. The PAMPA method employed stirring, adjusted such that the unstirred water layer (UWL) thickness matched the 30-100 microm range estimated to be i…

chemistry.chemical_classificationAbsorption (pharmacology)ChromatographyMembrane permeabilityAnalytical chemistrySynthetic membranePharmaceutical ScienceIntestinal absorptionPermeability (earth sciences)Piperazinechemistry.chemical_compoundchemistryRelative permeabilityAlkylEuropean Journal of Pharmaceutical Sciences
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Hydrothermal degradation of biobased poly(butylene succinate)/nanofibrillated cellulose composites

2021

Biobased polymers and composites have gained increased global attention due to their abundance, renewability, and biodegradability. Natural fillers such as cellulose-based fillers improve the mechanical properties of biopolymers, extending their application range, while maintaining the eco-friendly characteristics of the materials. Mowing towards engineering applications, requirements imposed on materials’ durability with regard to their environmental impact and high performance is necessary. Variations of ambient humidity and temperature could essentially reduce the service lifetime of biobased polymer composites. This study is focused on the hydrothermal degradation of poly(butylene succi…

chemistry.chemical_classificationAbsorption of waterMaterials sciencePolymerBiodegradationengineering.materialNanocellulosePolybutylene succinatechemistry.chemical_compoundchemistryengineeringDegradation (geology)BiopolymerCelluloseComposite materialProceedings of 1st Corrosion and Materials Degradation Web Conference
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From macroscopic to molecular scale investigations of mass transfer of small molecules through edible packaging applied at interfaces of multiphase f…

2009

Abstract This paper presents a multi-scale approach to investigate mass transfer properties of edible films that integrates some published data and new original results. The transport of small molecules, such as water, between the different parts of multiphase food products leads to quality deterioration and thus requires the use of barrier edible films or coatings. Therefore, it is necessary to characterise the properties of both food and edible barriers, like the diffusivities of their respective migrants. Surface properties characterisation of edible films, composed of an iota-carrageenan matrix in association with a high melting point fat was investigated by goniometry and allows the de…

chemistry.chemical_classificationAbsorption of waterMoisturebusiness.industryAnalytical chemistryFood technologyGeneral ChemistryPolymerPermeationIndustrial and Manufacturing EngineeringFood packagingChemical engineeringchemistryMass transferWettingbusinessFood ScienceInnovative Food Science & Emerging Technologies
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Hydrothermally resistant thermally reduced graphene oxide and multi-wall carbon nanotube based epoxy nanocomposites

2013

This study is focused on the investigation of thermo-mechanical properties of an epoxy resin filled with thermally reduced graphene oxide (TRGO) and multi-wall carbon nanotubes (MWCNT) after exposure of samples to hot distilled water. Addition of low contents of TRGO and MWCNTs greatly reduces the water sorption capacity of the epoxy polymer and improves its resistance to hydrothermal ageing. The glassy and rubbery moduli of the neat epoxy decreased for about 20% and 80%, respectively, while TRGO-based epoxy filled with 0.3 wt.% of TRGO showed only 6% reduction of both moduli. Hydrothermal ageing resulted in an enormous drop in the glass transition temperature (Tg) of the neat epoxy, by abo…

chemistry.chemical_classificationAbsorption of waterNanocompositeMaterials sciencePolymers and PlasticsGrapheneOxideCarbon nanotubePolymerEpoxyCondensed Matter Physicslaw.inventionchemistry.chemical_compoundchemistryMechanics of Materialslawvisual_artMaterials Chemistryvisual_art.visual_art_mediumComposite materialGlass transitionPolymer Degradation and Stability
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Thermodynamic studies of iron(III) complex of some new dihydroxamic acids model of rhodotorulic acid

2018

Abstract The objective of this research is to elucidate the coordination chemistry and the structure of complexes formed with siderochelates organic ligands and the physico-chemical studies of iron(III) complexation. Three dihydroxamic acids synthesized ((LCyEt)2−, (LCyPr)2− and (LO)2−) mimicking a fungal siderophore, rhodotorulic acid. They were evaluated with iron(III) chelation by potentiometric and spectrophotometric titrations in 0.1 M KNO3. These measurements revealed the formation of dileptic and trileptic complexes in excess ligand conditions. The chemical model includes five species of [Fem(L)lHh](3m−2l+h)+ with general formula: [Fe(L)]+, [Fe(L)(OH)], [Fe(L)(OH)2]−, [Fe(L)2H] and […

chemistry.chemical_classificationAbsorption spectroscopy010405 organic chemistryChemistryLigandElectrospray ionizationPotentiometric titration010402 general chemistry01 natural sciencesMedicinal chemistry0104 chemical sciencesCoordination complexInorganic ChemistryRhodotorulic acidchemistry.chemical_compoundMaterials ChemistryTitrationChelationPhysical and Theoretical ChemistryInorganica Chimica Acta
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Towards highly luminescent phenylene vinylene films

1996

Abstract Fluorescence and electronic absorption spectra, fluorescence decay curves and fluorescence quantum yields of a series of oligo (p-phenylene vinylenes) are investigated in solution, nanoaggregates and vapour-deposited or cast ultrathin films. The film constituting molecules are varied in chain length and modified by electron donating and withdrawing substituents and bulky alkyl spacers. PPP-MO calculations serve to rationalize the resulting spectral changes. In dilute solutions, fluorescence yields of the short oligomers with alkyl or oxyalkyl substituents approach the region of unity. The yields decrease with chain length, reaching a long-chain limit of ΦF=0.4–0.7. Introduction of …

chemistry.chemical_classificationAbsorption spectroscopyDouble bondMechanical EngineeringMetals and AlloysQuantum yieldCondensed Matter PhysicsInternal conversion (chemistry)PhotochemistryElectronic Optical and Magnetic MaterialschemistryMechanics of MaterialsPhenyleneMaterials ChemistryPolar effectMoleculeAlkylSynthetic Metals
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