Search results for "crystallin"

showing 10 items of 827 documents

Enantiodifferentiation of acyclic phosphonium salts in chiral liquid crystalline solutions

2006

Abstract The enantiodifferentiation of acyclic phosphonium salts bearing a stereogenic centre, whether on the phosphorus atom or on one of its substituents, was investigated by 2 H–{ 1 H}, 13 C–{ 1 H} and 31 P–{ 1 H} NMR in chiral liquid crystals composed of a polypeptide dissolved in an organic solvent. For the first time, the enantiomers of P-chirogenic phosphorus compounds were discriminated in these anisotropic media, affording good to excellent separation of the signals, allowing the determination of their proportion. While 31 P–{ 1 H} NMR spectra showed no chiral separation, 2 H–{ 1 H} NMR was efficient in the enantiodifferentiation of an isotopically labelled compound. Better still, …

Alternative methodsChemistryLiquid crystallineOrganic ChemistryCarbon-13 NMRCatalysisStereocenterInorganic ChemistryNMR spectra databasechemistry.chemical_compoundCrystallographyLiquid crystalOrganic chemistryPhosphoniumPhysical and Theoretical ChemistryEnantiomerTetrahedron: Asymmetry
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A qualitative examination of performance and energy yield of photovoltaic modules in southern Norway

2010

Three different, commercially available photovoltaic modules have been monitored outdoors in the town of Grimstad, Norway. The present paper describes the experimental setup that was implemented, in particular details of the low-cost electronic loads. Results compare measured performance with manufacturer's data, and temperature measurements enable a comparison with performance at standard test condition temperature. Overall, the monocrystalline module performed best both regarding maximum efficiency and overall energy production, whereas the module based on triple junction amorphous silicon technology had the worst performance considering these criteria. The gross numbers of energy yield c…

Amorphous siliconEngineeringRenewable Energy Sustainability and the Environmentbusiness.industryPhotovoltaic systemElectrical engineeringSolar energyTemperature measurementAutomotive engineeringMonocrystalline siliconMaximum efficiencychemistry.chemical_compoundchemistryPerformance ratiobusinessEnergy (signal processing)Renewable Energy
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A procedure to evaluate the seven parameters of the two-diode model for photovoltaic modules

2019

Abstract The paper presents an analytical procedure to calculate the seven parameters of the two-diode model of photovoltaic (PV) panels for any value of the solar irradiance and cell temperature. Six parameters (the photocurrent, the diode reverse saturation currents, the quality factor of the first diode and the series and shunt resistances), are evaluated by solving the equations related to the properties of the main points of the current-voltage (I-V) characteristics. The further information, necessary to calculate the entire set of seven truly independent parameters, is based on two conditions that have to be simultaneously satisfied: 1) the exclusion of negative values of the model pa…

Amorphous siliconI-V characteristic020209 energySeven-parameter equivalent modelTwo-diode model02 engineering and technologyTopologySolar irradianceMonocrystalline siliconchemistry.chemical_compoundSolar energy0202 electrical engineering electronic engineering information engineering0601 history and archaeologyDiodeMathematicsPhotocurrent060102 archaeologyRenewable Energy Sustainability and the Environmentbusiness.industryPhotovoltaic systemPV panel06 humanities and the artsSolar energyCopper indium gallium selenide solar cellschemistrybusinessRenewable Energy
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An accurate one-diode model suited to represent the current-voltage characteristics of crystalline and thin-film photovoltaic modules

2020

Abstract In this paper a new one-diode model, conceived in order to be used to represent the current-voltage curves of both crystalline and thin-film photovoltaic modules, is presented. The model parameters are calculated from the information contained in the datasheets issued by manufactures by means of simple iterative procedures that do not require the assumption of simplifying hypotheses. Some innovative relations describing the dependence of the parameters from the solar irradiance and cell temperature are adopted in order to permit the model to reliably simulate the electrical behaviour of photovoltaic devices operating in real conditions. The ability of the model to calculate the cur…

Amorphous siliconMaterials scienceSettore ING-IND/11 - Fisica Tecnica Ambientale060102 archaeologyMaximum power principleRenewable Energy Sustainability and the Environment020209 energyPhotovoltaic systemMechanical engineering06 humanities and the arts02 engineering and technologySolar irradianceCopper indium gallium selenide solar cellsPower (physics)Monocrystalline siliconThin-film photovoltaic modules One-diode model Five-parameter model I-V characteristics Solar energychemistry.chemical_compoundchemistry0202 electrical engineering electronic engineering information engineering0601 history and archaeologyDiode
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Crystallization kinetics of amorphous SiC films: Influence of substrate

2005

Abstract The crystallization kinetics of amorphous silicon carbide films was studied by means of X-ray diffractometry (XRD) and transmission electron microscopy (TEM). The films were deposited by radio frequency (r.f.) magnetron sputtering on glassy carbon and single crystalline silicon substrates, respectively. TEM micrographs and XRD patterns show the formation of nano-crystalline β-SiC with crystallite sizes in the order of 50 nm during annealing at temperatures between 1200 and 1600 °C. A modified Johnson–Mehl–Avrami–Kolmogorov (JMAK) formalism was used to describe the isothermal transformation of amorphous SiC into β-SiC as an interface controlled, three-dimensional growth processes fr…

Amorphous siliconMaterials scienceSiliconGeneral Physics and Astronomychemistry.chemical_elementGlassy carbonlaw.inventionchemistry.chemical_compoundsilicon carbidelawcrystallization kineticsCrystalline siliconCrystallizationsputter depositionSurfaces and InterfacesGeneral ChemistrySputter depositionCondensed Matter PhysicsSurfaces Coatings and FilmsAmorphous solidamorphous filmsCrystallographychemistryChemical engineering[ CHIM.MATE ] Chemical Sciences/Material chemistryCrystalliteApplied Surface Science
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Amorphous Silicon Nanotubes via Galvanic Displacement Deposition

2013

Amorphous silicon nanotubes were grown in a single step into a polycarbonate membrane by a galvanic displacement reaction conducted in aqueous solution. In order to optimize the process, a specifically designed galvanic cell was used. SEM images, after polycarbonate dissolution, showed interconnected nanotube bundles with an average length of 18 μm and wall thickness of 38 nm.The deposited silicon was revealed by EDS analysis, whilst X-ray diffraction and Raman spectroscopy showed that nanotubes have an amorphous structure. Silicon nanotubes were also characterized by photo-electrochemical measurements that showed n-type conductivity and optical gap of ~1.6 eV. Keywords: Silicon nanotubes, …

Amorphous siliconSilicon nanotubes dispalcement deposition nanostructures lithium batteries solar cellsNanotubeMaterials scienceSiliconNanocrystalline siliconchemistry.chemical_elementNanotechnologyAmorphous solidlcsh:Chemistrysymbols.namesakechemistry.chemical_compoundSettore ING-IND/23 - Chimica Fisica Applicatalcsh:Industrial electrochemistrylcsh:QD1-999chemistryvisual_artElectrochemistrysymbolsvisual_art.visual_art_mediumGalvanic cellPolycarbonateComposite materialRaman spectroscopylcsh:TP250-261
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Cooling of Hot Electrons in Amorphous Silicon

1997

ABSTRACTMeasurements of the cooling rate of hot carriers in amorphous silicon are made with a two-pump, one-probe technique. The experiment is simulated with a rate-equation model describing the energy transfer between a population of hot carriers and the lattice. An energy transfer rate proportional to the temperature difference is found to be consistent with the experimental data while an energy transfer independent of the temperature difference is not. This contrasts with the situation in crystalline silicon. The measured cooling rates are sufficient to explain the difficulty in observing avalanche effects in amorphous silicon.

Amorphous siliconeducation.field_of_studyMaterials scienceCondensed matter physicsSiliconPopulationNanocrystalline siliconchemistry.chemical_elementElectronchemistry.chemical_compoundCrystallographychemistryLattice (order)Charge carrierCrystalline siliconeducationMRS Proceedings
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Amorphous, nanocrystalline and crystalline calcium carbonates in biological materials

2010

Raman spectroscopy is a powerful tool in identifying different calcium carbonate polymorphs. Here, the method is applied to cultured pearls from freshwater (genus Hyriopsis) and marine bivalve species (Pinctada maxima) as well as to shells of Diplodon chilensis patagonicus bivalves. Raman spectra for vaterite, detected for the first time in an adult shell, and amorphous calcium carbonate (ACC) are discussed. Results for ACC are compared with those of synthetically produced ACC and with the Raman spectroscopic features of stable biogenic ACC from the crustacean Porcellio scaber. Decomposition of the most intense signal of all calcium carbonate polymorphs—the ν1 symmetric stretching mode of t…

Analytical chemistryMineralogyAmorphous calcium carbonateNanocrystalline materialAmorphous solidchemistry.chemical_compoundCrystallinitysymbols.namesakeCalcium carbonatechemistryVateritesymbolsCarbonateGeneral Materials ScienceRaman spectroscopySpectroscopyJournal of Raman Spectroscopy
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Influence of fluorine on the synthesis of anatase TiO2for photocatalytic partial oxidation: Are exposed facets the main actors?

2018

Anatase TiO2 samples were synthesized in the presence of different amounts of HF acid with the aim of understanding the effect of the presence of fluorine on the photocatalytic activity. It is well known that the presence of fluoride ions influences the photocatalytic performance by adsorption on the surface of TiO2 and that they are capping agents in the control of specific exposed facets. The samples were characterized by X-ray diffraction (XRD), Raman spectroscopy, nitrogen adsorption–desorption measurements, scanning electron microscopy (SEM), transmission electron microscopy (TEM), UV-vis spectrophotometry, and X-ray photoelectron spectroscopy (XPS). The photocatalytic activity was eva…

Anatase TiO2 Crystal facets Fluorine influenceAnataseMaterials scienceScanning electron microscope02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesCatalysis0104 chemical sciencesCrystallinitychemistry.chemical_compoundX-ray photoelectron spectroscopychemistrySpecific surface areaPhotocatalysisPartial oxidationSettore CHIM/07 - Fondamenti Chimici Delle Tecnologie0210 nano-technologyFluorideNuclear chemistry
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Determination of the crystallinity of TiO2 photocatalysts

2018

Abstract This study reports a new simple method to determine the crystallinity of anatase and rutile TiO2 photocatalysts. The crystallinity degree of various anatase and rutile samples was estimated by XRD analysis from the ratio among the full width at half maximum intensities of the main diffraction peaks of anatase or rutile and the (111) peak of CaF2 as internal standard. The photocatalytic activity of selected powders was tested employing the photodegradation of 4-nitrophenol in aqueous solution as probe reaction. The results showed that the photoactivity of the investigated samples increased with increasing crystallinity and crystallite size.

AnataseAqueous solutionAnataseXRDChemistryGeneral Chemical EngineeringAnalytical chemistryGeneral Physics and Astronomy02 engineering and technologyGeneral Chemistry010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesRutileFull width at half maximumCrystallinityPhotocatalysiRutilePhotocatalysisSettore CHIM/07 - Fondamenti Chimici Delle TecnologieCrystallite0210 nano-technologyPhotodegradationCrystallinityJournal of Photochemistry and Photobiology A: Chemistry
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