Search results for "periodic"

showing 10 items of 769 documents

Preparation and crystal structure of the oxalato-bridged CrIII–AgItwo-dimensional compound {Ag3(H2O)[Cr(dpa)(ox)2]3}n·2nH2O (dpa = 2,2′-dipyridylamin…

2004

The reaction of the mononuclear complex [Cr(dpa)(ox)2]− (dpa = 2,2-dipyridylamine) with Ag+ in aqueous solution affords the two-dimensional compound {Ag3(H2O)[Cr(dpa)(ox)2]3}n·2nH2O (1) whose structure has been determined by single-crystal X-ray diffraction. Six crystallographically independent metal atoms (three chromium and three silver atoms) occur in 1. The three [Cr(dpa)(ox)2]− units in 1 act as ligands towards the silver atoms through the two oxalate groups. Each oxalate group acts as bridging ligand adopting five coordination modes: bis-bidentate, bis-bidentate/monodentate (outer), bis-bidentate/monodentate (inner), bidentate/bis-monodentate (outer) and bidentate/monodentate (outer).…

DenticityAqueous solutionInorganic chemistrychemistry.chemical_elementBridging ligandGeneral ChemistryCrystal structureCondensed Matter PhysicsBlock (periodic table)OxalateMetalCrystallographychemistry.chemical_compoundChromiumchemistryvisual_artvisual_art.visual_art_mediumGeneral Materials ScienceCrystEngComm
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(2-Chlorobenzyl)tris(2-pyridinethiolato)tin(IV).

2000

In the title compound, (2-chlorobenzyl)tris(pyridine-2-thiolato)-kappa(2)N,S;kappa2N,S;kappaS-tin(IV), [Sn(C7H6Cl)(C5H4NS)3], two of the three pyridine-2-thiolato ligands (SPy) are bidentate and one is monodentate. The bonding C atom of the 2-chlorobenzyl group, the S atom of the monodentate SPy and the S and N atoms of the two bidentate SPy ligands form a distorted octahedron around the Sn atom. The three S atoms and the N atom of one of the bidentate SPy ligands occupy the equatorial positions, while the N atom of the second bidentate SPy ligand and the C(CH2) atom are axial. The axial N-Sn-C angle of 157.9 (1) degree demonstrates the heavy distortion of the octahedron.

DenticityChemistryLigandStereochemistrychemistry.chemical_elementGeneral MedicineCrystal structureGeneral Biochemistry Genetics and Molecular BiologyCrystallographyOctahedronGroup (periodic table)AtomMoleculeTinActa crystallographica. Section C, Crystal structure communications
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Chiral α-P,N Ligands From a Diastereoselective Ph2PH Addition to (η6-Benzaldimine)tricarbonylchromium Complexes

1999

International audience; Chiral α-aminophosphane (α-P–C–N) ligands have been prepared by reversible addition of Ph2PH to tricarbonylchromium benzaldimine complexes (CO)3Cr[η6-o-C6H4(Y)(CH=NR)] (with Y, R = CH3, CH3 or CH2COOCH3; CH3O, CH3 or p-CH3OC6H4; Cl, C6H5), with complete diastereoselectivity. These complexes are stabilized in solution by electron-withdrawing group(s) on the imine.

Diastereoselective reactionsStereochemistryOrganic ChemistryImine3. Good healthP ligandschemistry.chemical_compoundChromium complexeschemistryAminophosphaneGroup (periodic table)[CHIM.COOR]Chemical Sciences/Coordination chemistryPhysical and Theoretical ChemistryChiralityChirality (chemistry)
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Aperiodic Diffract: Study of diffraction gratings

2014

In this work we introduce a virtual laboratory, APERIODIC DIFFRACT, developed in Matlab GUI (Graphical User Interface) as an informatics tool for teaching the diffractive properties of aperiodic gratings. This GUI allows the student to  generate aperiodic sequences by iterating and lets to study the spectra for different iterating orders.<br /><br />

DiffractionEngineeringbusiness.industryGeneral MedicineGeneral Chemistrylcsh:Education (General)Aperiodic graphComputer graphics (images)Virtual LaboratoryComputerSystemsOrganization_SPECIAL-PURPOSEANDAPPLICATION-BASEDSYSTEMSMATLABbusinessTelecommunicationslcsh:L7-991computerDiffraction gratingDifracción secuencias aperiódicas espectrocomputer.programming_languageGraphical user interfaceComputingMethodologies_COMPUTERGRAPHICSModelling in Science Education and Learning
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Halogen and hydrogen bonds in compressed pentachloroethane

2016

In pentachloroethane, C2HCl5, high pressure initially strongly compresses the C–H⋯Cl bonds in phase I; however, in phase II which is stable above 0.62 GPa the role of hydrogen bonds is diminished and molecular aggregation is dominated by halogen bonds Cl⋯Cl. Both phases have been determined by X-ray diffraction and the phase diagram of C2HCl5 has been outlined. The transition between phases I and II retains some relation between their structures and reduces the symmetry from class mmm (space group Pnma) to 2/m (space group P21/n11). The discontinuous transition, with the shear strain exceeding 21°, is so strong that its progress can be visually observed even for powdered samples. The single…

DiffractionHydrogen bondPentachloroethane02 engineering and technologyGeneral Chemistry010402 general chemistry021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciencesSymmetry (physics)0104 chemical scienceschemistry.chemical_compoundCrystallographychemistryGroup (periodic table)Phase (matter)HalogenGeneral Materials Science0210 nano-technologyPhase diagramCrystEngComm
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The use of simulation methods to obtain the structure and conformation of 10-cyano-9,9′-bianthryl by electron diffraction and high-resolution imaging

1995

Abstract Experimental electron diffraction patterns and high-resolution images were used to determine the space group and unit cell dimensions of 10-cyano-9,9′-bianthryl. Subsequently the molecular conformation was calculated by semi-empirical quantum-mechanical methods. The molecule was then placed with the appropriate symmetry into the unit cell and the conformational as well as the packing energy deduced by an iterative procedure until good agreement was obtained between experiment and theory.

DiffractionNitrileChemistryStereochemistryCrystal structureSpace (mathematics)Molecular physicsAtomic and Molecular Physics and OpticsSymmetry (physics)Electronic Optical and Magnetic Materialschemistry.chemical_compoundElectron diffractionGroup (periodic table)MoleculeInstrumentationUltramicroscopy
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Diffraction by m-bonacci gratings

2015

We present a simple diffraction experiment with m-bonacci gratings as a new interesting generalization of the Fibonacci ones. Diffraction by these nonconventional structures is proposed as a motivational strategy to introduce students to basic research activities. The Fraunhofer diffraction patterns are obtained with the standard equipment present in most undergraduate physics labs and are compared with those obtained with regular periodic gratings. We show that m-bonacci gratings produce discrete Fraunhofer patterns characterized by a set of diffraction peaks which positions are related to the concept of a generalized golden mean. A very good agreement is obtained between experimental and …

DiffractionPhysicsFibonacci numberbusiness.industryGeneralizationMotivational strategyPhysics::OpticsGeneral Physics and AstronomyFraunhofer diffractionSet (abstract data type)Fibonaccisymbols.namesakeOpticsSimple (abstract algebra)Basic researchFISICA APLICADAsymbolsAperiodic sequencebusinessDiffraction
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Oblique incidence and polarization effects in coupled gratings.

2012

Oblique incidence and polarization orientation of the input beam have dramatic effects on the spectral response of coupled dielectric waveguide gratings. Coupled gratings with small periodic perturbations can be described as a problem of two coupled resonances at strictly normal incidence, but we find that the device involves four coupled resonances when oblique incidence and polarization effects are included in the analysis. Very small deviations from normal incidence change qualitatively the spectral response and four peaks are observed, whereas only two peaks are present at normal incidence. Polarization misalignments produce a decrease of the reflectance of the resonances at normal inci…

DiffractionPhysicsOnesbusiness.industryGuided-mode resonancePhysics::OpticsÒpticaCoupled mode theoryPolarization (waves)ReflectivityAtomic and Molecular Physics and OpticsOpticsPeriodic perturbationQ factorOblique incidencebusinessOptics express
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Undergraduate experiment with fractal diffraction gratings

2011

We present a simple diffraction experiment with fractal gratings based on the triadic Cantor set. Diffraction by fractals is proposed as a motivating strategy for students of optics in the potential applications of optical processing. Fraunhofer diffraction patterns are obtained using standard equipment present in most undergraduate physics laboratories and compared with those obtained with conventional periodic gratings. It is shown that fractal gratings produce self-similar diffraction patterns which can be evaluated analytically. Good agreement is obtained between experimental and numerical results. © 2011 IOP Publishing Ltd.

DiffractionPhysics::OpticsGeneral Physics and Astronomysymbols.namesakeOpticsFractalSelf-similarDiffraction gratingPhysicsOptical processingScience instructionUndergraduate experimentPotential applicationsbusiness.industryPeriodic gratingsDiffraction patternsCantor setsOptical processingFraunhofer diffractionCantor setInterferometryPhysics laboratoriesFractalsInterferometryStandard equipmentsFISICA APLICADAsymbolsNumerical resultsDiffraction gratingsFraunhofer diffraction patternsbusinessExperiments
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Time Evolution of Partial Discharges in a Dielectric Subjected to the DC Periodic Voltage

2022

Partial discharge (PD) detection can be considered one of the most useful tools for assessing the insulation conditions of the power apparatus in high-voltage systems. Under AC conditions, this analysis is widely employed in online and offline tests, such as type tests or commissioning, and can be carried out by applying the phase-resolved PD (PRPD) method, since the patterns can give information about the defect classification. Under DC voltages, the classic pattern recognition method cannot be performed, and the measurements show complexities related to the nature of the phenomena. For this reason, to date, a standard for PD measurements under DC does not exist. In previous papers, a new …

Direct current periodic (DCP)partial discharge (PD); direct current periodic (DCP); partial discharge measurements; HVDC; DCSettore ING-IND/31 - ElettrotecnicaControl and OptimizationHVDCRenewable Energy Sustainability and the EnvironmentEnergy Engineering and Power TechnologyElectrical and Electronic EngineeringPartial discharge (PD)Engineering (miscellaneous)DCEnergy (miscellaneous)Partial discharge measurementsEnergies; Volume 15; Issue 6; Pages: 2052
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