Search results for "Note"

showing 10 items of 10709 documents

Multi-technique approach for qualitative and quantitative characterization of furazidin degradation kinetics under alkaline conditions

2016

Degradation of drug furazidin was studied under different conditions of environmental pH (11-13) and temperature (30-60°C). The novel approach of hybrid hard- and soft-multivariate curve resolution-alternating least squares (HS-MCR-ALS) method was applied to UV-vis spectral data to determine a valid kinetic model and kinetic parameters of the degradation process. The system was found to be comprised of three main species and best characterized by two consecutive first-order reactions. Furazidin degradation rate was found to be highly dependent on the applied environmental conditions, showing more prominent differences between both degradation steps towards higher pH and temperature. Complim…

Clinical BiochemistryAnalytical chemistryPharmaceutical ScienceHydantoin02 engineering and technologyDerivativeKinetic energy01 natural sciencesLeast squaresMass SpectrometrySpectral lineAnalytical ChemistryHydrolysischemistry.chemical_compoundUltraviolet visible spectroscopyDrug DiscoverySpectroscopyFuraginHydrolysis010401 analytical chemistryTemperatureHydrogen-Ion Concentration021001 nanoscience & nanotechnology0104 chemical sciencesKineticschemistryDegradation (geology)Spectrophotometry Ultraviolet0210 nano-technologyJournal of Pharmaceutical and Biomedical Analysis
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Determination of kinetic parameters of redox reactions using CE‐ICP‐MS: A case study for the reduction of Np(V) by hydroxylamine hydrochloride

2018

The rate constants k of the reduction of 5 × 10-5  M Np(V) to Np(IV) by hydroxylamine hydrochloride (HAHCl) in 1 M HCl have been determined by CE-ICP-MS in the temperature range of ϑ = 30-70°C and with varying concentrations of HAHCl from 1 to 7.2 M. The reaction was found to have (pseudo)first order kinetics with respect to HAHCl. The experimental results for k ranged from 0.0029(1) min-1 (ϑ = 40°C, c(HAHCl) = 3 M) to 0.039(7) min-1 (ϑ = 60°C, c(HAHCl) = 7.2 M). The activation energy of the reaction was determined as EA  = (72 ± 10) kJ/mol. These results and a comparison with literature data show that the coupling of CE to ICP-MS provides a powerful analytical tool for the investigation of…

Clinical BiochemistryInorganic chemistrychemistry.chemical_elementHydroxylamine02 engineering and technologyActivation energy01 natural sciencesBiochemistryRedoxMass SpectrometryAnalytical ChemistryNeptuniumReaction rate constantTransition metalChemistryNeptunium010401 analytical chemistryTemperatureElectrophoresis CapillaryActinideRate equationAtmospheric temperature range021001 nanoscience & nanotechnology0104 chemical sciencesKineticsReducing Agents0210 nano-technologyOxidation-ReductionELECTROPHORESIS
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Novel bifunctional DATA chelator for quick access to site-directed PET 68Ga-radiotracers: preclinical proof-of-principle with [Tyr3]octreotide

2017

Molecular imaging of tumors with the PET radionuclide 68Ga has gained momentum in clinical oncology due to the expanding availability of commercial 68Ge/68Ga-generators in combination with state-of-the-art PET/CT and PET/MRI hybrid imaging systems. Concurrently, interesting peptide-based or small-size vectors have been developed for theranostic use in cancer patients. Owing to the short half-life of 68Ga (t1/2 = 67.7 min) and the sensitivity of many targeting biomolecules, labeling and kit reconstitution in mild conditions allowing for quick access to ready-for-injection PET-tracers are highly desirable. The novel DATA ((6-pentanoic acid)-6-(amino)methy-1,4-diazepinetriacetate) chelator pre…

Clinical OncologyOctreotideNanotechnology010402 general chemistry01 natural sciences030218 nuclear medicine & medical imaging0104 chemical sciencesInorganic Chemistry03 medical and health scienceschemistry.chemical_compound0302 clinical medicinechemistryCancer researchmedicineBifunctional chelatorChelationMolecular imagingBifunctionalClearancemedicine.drugDalton Transactions
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Reverse electrodialysis heat engine for sustainable power production

2017

Abstract Reverse Electrodialysis Heat Engine (REDHE) is a promising technology to convert waste heat at temperatures lower than 100 °C into electric power. In the present work an overview of the possible regeneration methods is presented and the technological challenges for the development of the RED Heat Engine (REDHE) are identified. The potential of this power production cycle was investigated through a simplified mathematical model. In the first part of the work, several salts were singularly modelled as possible solutes in aqueous solutions feeding the RED unit and the corresponding optimal conditions were recognized via an optimization study. In the second part, three different RED He…

Closed loopSettore ING-IND/26 - Teoria Dello Sviluppo Dei Processi ChimiciThermal efficiencyWork (thermodynamics)Combined cycle020209 energy02 engineering and technologyManagement Monitoring Policy and Law7. Clean energyModellingThermolytic saltlaw.inventionlawWaste heatReversed electrodialysisReverse electrodialysi0202 electrical engineering electronic engineering information engineeringProcess engineeringCivil and Structural EngineeringHeat engineWaste managementbusiness.industryChemistryMechanical EngineeringBuilding and ConstructionClosed loop; Heat engine; Modelling; Power production cycle; Reverse electrodialysis; Thermolytic salts; Civil and Structural Engineering; Building and Construction; Energy (all); Mechanical Engineering; Management Monitoring Policy and LawPower production cycle021001 nanoscience & nanotechnology6. Clean waterPower (physics)Energy (all)General EnergyElectric power0210 nano-technologybusinessHeat engineApplied Energy
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Protein Corona Mediated Stealth Properties of Biocompatible Carbohydrate‐based Nanocarriers

2018

ClusterinbiologyChemistryProtein Corona02 engineering and technologyGeneral ChemistryCarbohydrate010402 general chemistry021001 nanoscience & nanotechnologyBiocompatible material01 natural sciencesNanocapsules0104 chemical sciencesImmune systemBiophysicsbiology.proteinNanocarriers0210 nano-technologyIsrael Journal of Chemistry
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Preparation, characterization and hydrolytic degradation of PLA/PCL co-mingled nanofibrous mats prepared via dual-jet electrospinning

2017

Abstract PLA/PCL co-mingled nanofibrous mats were prepared via multi-jet electrospinning. The concentration of PLA and PCL in the co-mingled mats were controlled by changing the flow rate of the two polymer solutions. The amount of PLA and PCL in the co-mingled nanofibrous mats was monitored by UV–Vis measurements through a colored dye added to PLA and by FTIR-ATR analysis. Morphology and mechanical properties of the nanofibrous mats were respectively examined by scanning electron microscopy (SEM) and tensile tests. Water contact angles measurements were also carried out in order to investigate the wettability of the materials. Finally, the hydrolytic degradation of the mats in buffer solut…

Co-mingled nanomatCo-electrospinningMaterials scienceHydrolytic degradationPolymers and PlasticsScanning electron microscopeGeneral Physics and Astronomy02 engineering and technology010402 general chemistry01 natural sciencesContact anglechemistry.chemical_compoundPhysics and Astronomy (all)Polymer degradationUltimate tensile strengthMaterials ChemistryComposite materialchemistry.chemical_classificationPolymers and PlasticpH dependent degradationOrganic ChemistryPolymerBuffer solutionPolymer degradation021001 nanoscience & nanotechnologyElectrospinning0104 chemical scienceschemistryChemical engineeringDual-jet electrospinningWetting0210 nano-technology
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EFFECT OF SURFACTANT AND SUBSTRATE TEMPERATURE ON THE GROWTH OF Ag FILMS ON A SAPPHIRE SURFACE

1997

The possibility of modification of the thin film growth on an insulating (sapphire) substrate by using a Ga monolayer as a "surfactant" was studied. We found that the films grown in this way are electrically conducting and can emit photoelectrons at much lower thickness than those deposited on a pure substrate. The surfactant stabilizes the positions of Ag atoms on the substrate surface and inhibits the coalescence of small nuclei into bigger islands, even when the film is annealed to 450 K. This fact may be very important for thin metal film technology.

Coalescence (physics)Materials scienceSubstrate surfaceNanotechnologySurfaces and InterfacesPhotoelectric effectCondensed Matter PhysicsSurfaces Coatings and FilmsPulmonary surfactantChemical engineeringMonolayerMaterials ChemistrySapphireThin metalThin filmSurface Review and Letters
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A new view on the kinetics of tricalcium silicate hydration

2016

Abstract C3S hydration is an interesting example of chemical coupling between C3S dissolution, C–S–H and portlandite precipitation. It occurs because Ca2 +, OH− and silicate ions are present in C3S, in both hydration products and in the surrounding solution. Various experimental data sets reveal that the undersaturation with respect to C3S always increases when C3S hydration enters into the deceleratory phase, leading to the conclusion that C3S dissolution is at the origin of this deceleration, not C–S–H growth. In addition, as soon as portlandite precipitates, the dissolution limits the hydration already in the acceleratory hydration step. The evolution of the undersaturation cannot accoun…

Coalescence (physics)Precipitation (chemistry)ChemistryKineticsInorganic chemistry0211 other engineering and technologiesThermodynamics02 engineering and technologyBuilding and Constructionengineering.material021001 nanoscience & nanotechnologyPortlanditeSilicateIonchemistry.chemical_compoundPhase (matter)021105 building & constructionengineeringGeneral Materials Science0210 nano-technologyDissolutionCement and Concrete Research
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New advances in the 3D characterization of mineral coating layers on paper

2008

Summary The surface characteristics of a large set of commercial lightweight coated paper grades are explored. The quantification of the 3D structure is revealed by atomic force microscopy, laser profilometry and X-ray microtomography. This comprehensive study demonstrates the suitability of different and modern methods for assessing critical coating layer properties, thus identifying the right tools for specific structural analyses. Based on the assessment of the top and bottom surfaces of 25 commercial lightweight coated samples, three main conclusions can be drawn: (1) the facet orientation polar angle is a function of roughness, (2) skewness did not describe the surface details affectin…

Coated paperHistologyMaterials scienceAtomic force microscopyNanotechnologySurface finishengineering.materialGloss (optics)Pathology and Forensic MedicineCoatingMicroscopySurface roughnessengineeringSurface structureJournal of Microscopy
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2013

The amyloid-β42 (Aβ42) peptide plays a crucial role in the pathogenesis of Alzheimer’s disease (AD), the most common neurodegenerative disorder affecting the elderly. Over the past years, several approaches and compounds developed for the treatment of AD have failed in clinical studies, likely in part due to their low penetration of the blood–brain barrier (BBB). Since nanotechnology-based strategies offer new possibilities for the delivery of drugs to the brain, this technique is studied intensively for the treatment of AD and other neurological disorders. The Aβ42 lowering drug flurbiprofen was embedded in polylactide (PLA) nanoparticles by emulsification-diffusion technique and their pot…

Cognitive NeuroscienceFlurbiprofenDrug delivery to the brainProtein Corona02 engineering and technologyPharmacologyBlood–brain barrier03 medical and health sciencesMedicineBarrier function030304 developmental biology0303 health sciencesbusiness.industryBiological activitymusculoskeletal system021001 nanoscience & nanotechnology3. Good healthEndothelial stem cellmedicine.anatomical_structureNeurologylipids (amino acids peptides and proteins)Neurology (clinical)0210 nano-technologybusinessDrug carrierNeurosciencemedicine.drugAlzheimer's Research & Therapy
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