Search results for "Magnetism"

showing 10 items of 1934 documents

Crystal structure and magnetic study of the complex salt [RuCp(PTA)2–μ-CN-1κC:2κN–RuCp(PTA)2][Re(NO)Br4(EtOH)0.5(MeOH)0.5]

2021

A new RuII–ReII complex salt, μ-cyanido-κ2 C:N-bis[(η5-cyclopentadienyl)bis(3,5,7-triazaphosphaadamantane-κP)ruthenium(II)] tetrabromido(ethanol/methanol-κO)nitrosylrhenate(II), [Ru(CN)(C5H5)2(C6H12N3P)4][ReBr4(NO)(CH4O)0.5(C2H6O)0.5] or [RuCp(PTA)2–μ-CN–1κC:2κ2 N-RuCp(PTA)2][Re(NO)Br4(EtOH)0.5(MeOH)0.5] (PTA = 3,5,7-triazaphosphaadamantane) was obtained and characterized by single-crystal X-ray diffraction, elemental analysis and infrared spectroscopy. The title salt was obtained by liquid–liquid diffusion of methanol/DMSO solutions of (NBu4)[Re(NO)Br4(EtOH)] and [(PTA)2CpRu–μ-CN–1κC:2κ2 N-RuCp(PTA)2](CF3SO3). The RuII and ReII independent moieties correspond to a binuclear and mononuclear…

crystal structureSalt (chemistry)Infrared spectroscopychemistry.chemical_element02 engineering and technologyCrystal structure010402 general chemistry01 natural sciencesMedicinal chemistryptachemistry.chemical_compoundGeneral Materials ScienceMagnetic studyQD1-999chemistry.chemical_classificationEthanolChemistryGeneral Chemistry021001 nanoscience & nanotechnologyCondensed Matter Physicsx-ray structure0104 chemical sciencesRutheniumruthenium(ii)ChemistryParameter analysismagnetismrhenium(ii)Methanol0210 nano-technologyActa Crystallographica Section E Crystallographic Communications
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Unexpected behaviour of copper(I) towards a tridentate Schiff base: Synthesis, structure and properties of new Cu(I)-Cu(II) and Cu(II) complexes

2001

cited By 17; International audience; The reaction of CuBr with 2,6-bis[1-(2,6-diisopropylphenylimino)ethyl]pyridine L afforded a new Cu(I)-Cu(II) derivative [CuBrL]2[Cu2Br4] (1), while the reaction of [Cu(CH3CN)4]PF6 with L in THF yielded the new Cu(I) compound CuL(THF)(CH3CN)PF6 (2). Derivative 2 further reacted with halogenated solvents to yield halogeno-Cu(II) salts, [CuClL]PF6 (3) using CHCl3 and [CuBrL]Br3 (4) using CHBr3. Compounds 1, 3 and 4 have been fully characterised by X-ray crystallography; they contain essentially similar [CuXL]+ cations with a square planar copper(II) co-ordination. However, the structure of compound 1 must be viewed as built of tetranuclear units since two […

crystal structurespectroscopysynthesisStereochemistry2chemistry.chemical_elementcyclic potentiometrypyridine derivativeCrystal structure010402 general chemistryElectrochemistry01 natural sciencesMedicinal chemistrysolventIonInorganic Chemistrychemistry.chemical_compoundSchiff basecopper derivativehalogenationPyridineMaterials Chemistry[CHIM]Chemical SciencesPhysical and Theoretical Chemistrychemical bondSchiff base010405 organic chemistryChemistry6 bis[2chemical interactionarticleanionX ray crystallographyCopperstructure analysis0104 chemical sciencescationunclassified drug6 diisopropylphenylimino)ethyl]pyridineelectrochemistryYield (chemistry)magnetismDerivative (chemistry)copper bromide
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Plasman diamagnetismi ECR-ionilähteessä

2009

Tässä tutkielmassa pyritään esittämään teoreettiset lähtökohdat plasman diamagneettisen ilmiön kuvaamiselle magnetohydrodynamiikan avulla. Teoreettisessa osiossa määritellään mitä plasma on ja johdetaan plasmalle karakteristiset ominaisuudet. Koska plasma on pääasiassa ionisoitunutta kaasua, se käyttäytyy kuten neste, johon vaikuttavat sähköiset ja magneettiset voimat. Altistettaessa plasma ulkoiselle magneettikentälle, plasman sisällä syntyy diamagneettinen virta, joka synnyttää ulkoista magneettikenttää heikentävän kentän. Tätä ilmiötä kutsutaan plasman diamagneettiseksi ilmiöksi. Kokeellisessa osiossa esitetään ECR-ionilähteen tärkeimmät ominaisuudet, toimintaperiaate sekä lähtökohdat pl…

diamagnetismiionilähdeplasma
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Demo 57. Levitación diamagnética

2013

Objetivo: Demostrar la repulsión magnética en materiales diamagnéticos como el grafito y cómo ello permite hacer levitar un imán de forma estable.

diamagnetismoelectromagnetismofísica cuántica estructura de la materia y estado sólido
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A new phase in ferroelectric oxides: The phase of charge transfer vibronic excitons

2001

It is shown, by means of Hartree-Fock-type calculations using the intermediate neglect of the differential overlap (INDO) method, that polaronic-type charge transfer vibronic excitons (CTVE) in ferroelectric oxides could lead to the formation of a new phase. The ground-state energy of this phase of strongly correlated CTVE lies within an optical gap of pure crystal, and is characterized by a strong tetragonal lattice distortion, as well as ferroelectric and antiferromagnetic ordering. It is shown also that clusters of the CTVE phase being stabilized by oxygen vacancies could be responsible for the unusually strong optical Second Harmonic Generation (SHG) in nominally pure incipient ferroele…

education.field_of_studyMaterials scienceCondensed matter physicsExcitonPopulationGeneral Physics and AstronomyFerroelectricityCondensed Matter::Materials ScienceTetragonal crystal systemchemistry.chemical_compoundchemistryElectric fieldPhase (matter)Strontium titanateAntiferromagnetismeducationEurophysics Letters (EPL)
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Manipulation of antiferromagnetic domain distribution in Mn2 Au by ultrahigh magnetic fields and by strain

2017

Evidence for a spin reorientation in antiferromagnetic (AFM) Mn2Au thin films induced by high magnetic fields as well as by the application of in-plane mechanical stress is provided. The AFM domain population in the samples was investigated by resonant X-ray Magnetic Linear Dichroism (XMLD) measurements at the L3 edge of Mn using a variable linear polarization of the incident photon beam. As grown samples show no XMLD signal due to averaging over a random AFM domain distribution. After the exposure to a 70 T in-plane magnetic field a clear XMLD signal indicating the generation of a preferential AFM domain orientation is obtained. The same type of XMLD signal is observed when the thin films …

education.field_of_studyMaterials scienceCondensed matter physicsLinear polarizationPopulation02 engineering and technology021001 nanoscience & nanotechnologyCondensed Matter PhysicsLinear dichroism01 natural sciencesMagnetic fieldStress (mechanics)0103 physical sciencesAntiferromagnetismCondensed Matter::Strongly Correlated ElectronsGeneral Materials ScienceThin film010306 general physics0210 nano-technologyeducationSpin (physics)physica status solidi (RRL) - Rapid Research Letters
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Electronic and magnetic structure ofLa0.875Sr0.125MnO3calculated by means of hybrid density-functional theory

2007

We present the results of ab initio calculations on magnetic and electronic structures of La1�xSrxMnO3 at low doping, x =1/8. Using the B3LYP hybrid exchange-correlation functional within the framework of densityfunctional theory, we predict a ferromagnetic ground state for La0.875Sr0.125MnO3 in both the low-temperature orthorhombic and the high-temperature pseudocubic phases. This is in contrast to its parent compound LaMnO3, for which we find in agreement with experiment the layered antiferromagnetic state to be the most stable one. The calculated density of states and bond population analysis suggest a tendency of formation of half-metallic spin states in the band gap of both structures.

education.field_of_studyMaterials scienceCondensed matter physicsMagnetic structureSpin statesPopulationCondensed Matter PhysicsElectronic Optical and Magnetic MaterialsCondensed Matter::Materials ScienceAb initio quantum chemistry methodsDensity of statesAntiferromagnetismCondensed Matter::Strongly Correlated ElectronsDensity functional theoryGround stateeducationPhysical Review B
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Electromagnetic scattering solutions for digital signal processing

2010

electromagnetic wavesscattering theoryfractional diffusion equationelectromagnetic scatteringdigital signal processingsähkömagnetismisirontainverse scatteringsignal processingelectromagnetic imagingsähkömagneettinen säteily
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Demo 19. Funcionamiento de un timbre

2013

Objetivo: Entender el funcionamiento de un timbre.

electromagnetismocircuitoselectroimán
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Demo 33. Inducción electromagnética y el transformador

2013

Objetivo: 1.- Observar fenómenos de inducción mediante elementos móviles. 2.- Observar fenómenos de inducción mediante corrientes variables con el tiempo. 3.- Establecer la estructura de un transformador de eléctrico.

electromagnetismoinducción magnética
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